metal-organic compounds
Bis(1,3-diphenylpropane-1,3-dionato-κ2O,O′){hydrotris[3-(2-pyridyl)pyrazol-1-yl]borato}praseodymium(III): another member of an unpredictable series
aDepartment of Chemistry, University of Sheffield, Sheffield S3 7HF, England
*Correspondence e-mail: m.d.ward@sheffield.ac.uk
Reaction of praseodymium(III) chloride with stoichometric quantities of dibenzoylmethane (Hdbm) and hydrotris[3-(2-pyridyl)pyrazol-1-yl]borate (Tp2py) affords the title complex, [Pr(C24H19BN9)(C15H11O4)2]. The lanthanide ion in this ternary complex exhibits an N6O4 ten-coordinate geometry arising from the five bidentate arms found on the anionic ligands. The structure is entirely different from those found in other lanthanide complexes with the same ligand set.
Comment
Since their introduction, poly(pyrazolyl)borate ligands [for a review, see Trofimenko (1993)] have proved extremely popular for the coordination chemistry of lanthanide(III) ions (Marques et al., 2002). This is largely for two reasons: firstly, their multiple hard donor set and single negative charge are ideally attractive to the hard lanthanide(III) cations; secondly, the ease with which substituents can be added at the 3- and 5-positions of the pyrazolyl rings allows fine-tuning of the size of the ligand cavity. We have been interested in both the structural and photophysical properties of such complexes (Amoroso et al., 1994; Bardwell et al., 1997; Jones et al., 1997; Armaroli et al., 1999; Reeves et al., 1999; Beeby et al., 2002), particularly with the ligand hydrotris[3-(2-pyridyl)pyrazol-1-yl]borate (Tp2py), in which the pyrazolyl rings are functionalized with 2-pyridyl substituents, creating a hexadentate podand-type ligand.
We have used dbm (Hdbm is dibenzoylmethane) as a co-ligand in order to exclude solvent molecules from the coordination sphere of the metal ion, which is essential for optimization of the photophysical properties of lanthanide(III) complexes (Beeby et al., 1999), and have recently structurally characterized two types of mixed-ligand Tp2py/dbm complex with lanthanide(III) ions. In eight-coordinate [Ln(Tp2py)(dbm)2] (Ln is Eu or Tb), one of the three bidentate arms of Tp2py is pendant, such that this ligand is only tetradentate and the metal centre has an N4O4 coordination sphere (Ward et al., 1999; Davies et al., 2004). In contrast, [Nd(Tp2py)2][Nd(dbm)4] contains 12-coordinate [Nd(Tp2py)2]+ cations and eight-coordinate [Nd(dbm)4]− anions, the former with an icosahedral N12 coordination and the latter with unusual O8 cubic geometry (Davies et al., 2004). In this paper, we report a new structural type in this series, the title compound, [Pr(Tp2py)(dbm)2], (I), which is ten-coordinate, with the PrIII ion in an N6O4 environment with all three chelating arms of Tp2py attached to the metal centre.
Complex (I) (Fig. 1) was prepared by the reaction of praseodymium(III) chloride hydrate with KTp2py and Hdbm (1:1:2 molar ratio) in aqueous methanol with a few drops of triethylamine added. By comparison with the analogous EuIII and TbIII structures, the original concept of the ligand design is achieved in this case, with all three arms of the Tp2py molecule chelating to the PrIII ion. The larger ionic radius of PrIII allows the two dbm units to coordinate without displacing one of the arms of the scorpionate, in contrast with the behaviour shown by the smaller ions EuIII and TbIII. This places the metal ion in a ten-coordinate N6O4 coordination environment, with all five chelating units (three pyrazolyl-pyridine units and two dbm ligands) being approximately parallel to one another.
Many ten-donor coordination spheres exist among PrIII complexes, although only two previous examples of N6O4 environments have been reported to date (Jones et al., 1997; Tamboura et al., 2004). The Pr—N and Pr—O bond lengths are unremarkable, with averages of 2.652, 2.738, and 2.469 Å for the Pr—Npz, Pr—Npy and Pr—O bonds (pz is pyrazolyl and py is pyridyl), respectively, all of which are understandably longer than those of the EuIII and TbIII analogues.
The coordination geometry of (I) does not obviously match any of the `ideal' arrangments of ten-coordination (Kepert, 1987). The best way of looking at the coordination geometry is down the N122—Pr1 bond (Fig. 2). The other two pyrazole N atoms, N102 and N142, form a pentagon with pyridyl atom N131 and atoms O55 and O21 from the dbm units. The average edge length and angle for this pentagon are 2.818 Å and 107.6°, respectively, using O55; if O55′ is used instead, these values become 2.871 Å and 106.9°, respectively. These five atoms display an average deviation from their mean plane of 0.095 (if O55 is used) or 0.180 Å (if O55′ is used). The pentagon is capped by atom N122, while on the other side of the pentagon resides a distorted square described by atoms O25, N151, N111 and O51. This `square' has an average edge of 2.983 Å and an average angle of 89.5° at its corners, but is rather irregular, with the corner angles varying from 75.50 to 102.31°. The mean deviation from the plane of these four atoms is 0.135 Å.
In conclusion, the contrast of this structure with those of the EuIII, TbIII and NdIII analogues with the same stoichiometry is remarkable. The difference between this PrIII structure and the eight-coordinate complexes with TbIII and EuIII can be rationalized on the basis of the larger ionic radius of PrIII. The contrast with the structure of [Nd(Tp2py)2][Nd(dbm)4] is less easy to explain. It is possible that there is an equilibrium mixture of structural types in solution which is perturbed in one direction or another by crystallization. We examined several crystals of (I) and found them all to have the same unit cell.
Experimental
KTp2py was prepared according to the published method of Amoroso et al. (1994). KTp2py (202 mg, 0.42 mmol) in MeOH (5 ml) was added to a solution of PrCl3·6H2O (148 mg, 0.42 mmol) in MeOH (5 ml) and allowed to stir for 5 min at room temperature. A solution of Hdbm (188 mg, 0.84 mmol) in MeOH (5 ml) with Et3N (1 ml) was added and, after a further 5 min, water (20 ml) was added, generating a lime-green precipitate. The product was isolated by filtration and slowly recrystallized by the layering of hexanes onto a concentrated solution of the product in dichloromethane. After 5 d, the green crystals which formed were collected by filtration and washed with hexane and ether to give (I) in 67% yield. IR: ν(B—H) 2444 cm−1. Analysis found: C 62.2, H 4.0, N 12.0%; calculated for [Pr(C24H19BN9)(C15H11O4)2]: C 61.8, H 4.1, N 12.0%. FAB–MS gave a strong peak at m/z = 808, corresponding to the loss of one dbm unit to give the fragment {Pr(Tp2py)(dbm)}+; a weaker signal at m/z = 1029 suggested the presence of the {Pr(Tp2py)(dbm)2} unit minus two H atoms. The crystals were suitable for single-crystal X-ray diffraction and were completely air-stable. A suitable crystal was coated in engine oil to clean it of subsidiary grains.
Crystal data
|
Refinement
|
|
One of the dbm units was shown to contain disorder about atom C52. The disordered phenyl ring was constrained to ideal geometry and the disorder was modelled over two sites, with refined site occupancies of 0.514 (3) and 0.486 (3). All H atoms were positioned geometrically and refined with a riding model, with C—H = 0.93 Å for aromatic rings and 0.96 Å for disordered rings, and with B—H = 1.07 Å. In all cases, Uiso(H) values were constrained to be 1.2Ueq of the carrier atom.
Data collection: XSCANS (Siemens, 1996); cell XSCANS; data reduction: SHELXTL (Bruker, 1997); program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: SHELXTL; software used to prepare material for publication: SHELXTL.
Supporting information
10.1107/S0108270105007791/gd1380sup1.cif
contains datablocks I, global. DOI:Structure factors: contains datablock I. DOI: 10.1107/S0108270105007791/gd1380Isup2.hkl
KTp2py was prepared according to the published method of Amoroso et al. (1994). KTp2py (202 mg, 0.42 mmol) in MeOH (5 ml) was added to a solution of PrCl3·6H2O (148 mg, 0.42 mmol) in MeOH (5 ml) and allowed to stir for 5 min at room temperature. A solution of Hdbm (188 mg, 0.84 mmol) in MeOH (5 ml) with Et3N (1 ml) was added and, after 5 min, addition of H2O (20 ml) generated a lime-green precipitate. The product was isolated by filtration and slowly recrystallized by the layering of hexanes onto a concentrated solution of the product in dichloromethane. After 5 d, the green crystals were collected by filtration and washed with hexane and ether to give (I) in 67% yield. Spectroscopic analysis: IR: ν(B—H) 2444 cm−1. Analysis, found: C 62.2, H 4.0, N 12.0%; calculated for [Pr(C24H19N9B)(C15H11O4)2]·H2O No hydrate in other formulae?: C 61.8, H 4.1, N 12.0%. FAB-MS gave a strong peak at m/z 808, corresponding to the loss of one dbm unit to give the fragment {Pr(Tp2py)(dbm)}+; a weaker signal at m/z 1029 suggested the presence of the {Pr(Tp2py)(dbm)2} unit, minus two H atoms. The crystals were suitable for single-crystal X-ray diffraction and were completely air-stable. A suitable crystal was coated in engine oil to clean it of subsidiary grains.
One of the dbm units was shown to contain disorder about atom C52. The disordered phenyl ring was constrained to the ideal geometry and the disorder was modelled over two sites, with refined site occupancies of 0.514 (3) and 0.486 (3). H atoms were positioned geometrically and refined with a riding model, with C—H = 0.93 Å for aromatic rings and 0.96 Å for disordered rings, and with B—H = 1.07 Å. In all cases, Uiso(H) was constrained to be 1.2Ueq of the carrier atom.
Data collection: XSCANS (Siemens, 1996); cell
XSCANS; data reduction: SHELXTL (Bruker, 1997); program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: SHELXTL; software used to prepare material for publication: SHELXTL.[Pr(C24H19BN9)(C15H11O4)2] | Z = 2 |
Mr = 1031.68 | F(000) = 1048 |
Triclinic, P1 | Dx = 1.476 Mg m−3 |
Hall symbol: -P1 | Mo Kα radiation, λ = 0.71073 Å |
a = 11.6308 (15) Å | Cell parameters from 4832 reflections |
b = 11.9248 (16) Å | θ = 4.7–54.6° |
c = 18.569 (2) Å | µ = 1.11 mm−1 |
α = 96.558 (2)° | T = 150 K |
β = 106.782 (2)° | Block, green |
γ = 105.669 (2)° | 0.34 × 0.25 × 0.18 mm |
V = 2321.9 (5) Å3 |
Bruker SMART 1000 CCD area-detector diffractometer | 8143 independent reflections |
Radiation source: fine-focus sealed tube | 7003 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.032 |
Detector resolution: 100 pixels mm-1 | θmax = 25.0°, θmin = 1.2° |
ω scans | h = −13→13 |
Absorption correction: multi-scan (SADABS; Sheldrick, 1996) | k = −14→14 |
Tmin = 0.705, Tmax = 0.826 | l = −22→22 |
22669 measured reflections |
Refinement on F2 | Primary atom site location: structure-invariant direct methods |
Least-squares matrix: full | Secondary atom site location: difference Fourier map |
R[F2 > 2σ(F2)] = 0.033 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.074 | H-atom parameters constrained |
S = 1.05 | w = 1/[σ2(Fo2) + (0.0285P)2 + 2.7047P] where P = (Fo2 + 2Fc2)/3 |
8143 reflections | (Δ/σ)max < 0.001 |
680 parameters | Δρmax = 0.73 e Å−3 |
230 restraints | Δρmin = −0.72 e Å−3 |
[Pr(C24H19BN9)(C15H11O4)2] | γ = 105.669 (2)° |
Mr = 1031.68 | V = 2321.9 (5) Å3 |
Triclinic, P1 | Z = 2 |
a = 11.6308 (15) Å | Mo Kα radiation |
b = 11.9248 (16) Å | µ = 1.11 mm−1 |
c = 18.569 (2) Å | T = 150 K |
α = 96.558 (2)° | 0.34 × 0.25 × 0.18 mm |
β = 106.782 (2)° |
Bruker SMART 1000 CCD area-detector diffractometer | 8143 independent reflections |
Absorption correction: multi-scan (SADABS; Sheldrick, 1996) | 7003 reflections with I > 2σ(I) |
Tmin = 0.705, Tmax = 0.826 | Rint = 0.032 |
22669 measured reflections |
R[F2 > 2σ(F2)] = 0.033 | 230 restraints |
wR(F2) = 0.074 | H-atom parameters constrained |
S = 1.05 | Δρmax = 0.73 e Å−3 |
8143 reflections | Δρmin = −0.72 e Å−3 |
680 parameters |
Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes. |
Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger. |
x | y | z | Uiso*/Ueq | Occ. (<1) | |
Pr1 | −0.003830 (17) | 0.130026 (17) | 0.245282 (11) | 0.02367 (7) | |
B1 | 0.2148 (5) | 0.4280 (5) | 0.2294 (3) | 0.0548 (15) | |
H1 | 0.2645 | 0.5147 | 0.2249 | 0.066* | |
N101 | 0.2973 (3) | 0.3481 (3) | 0.25498 (18) | 0.0515 (9) | |
N102 | 0.2392 (3) | 0.2318 (3) | 0.25452 (17) | 0.0439 (8) | |
C103 | 0.3256 (4) | 0.1768 (5) | 0.2630 (2) | 0.0580 (12) | |
C104 | 0.4439 (4) | 0.2599 (6) | 0.2708 (2) | 0.0695 (12) | |
H104 | 0.5209 | 0.2458 | 0.2785 | 0.083* | |
C105 | 0.4208 (4) | 0.3636 (6) | 0.2647 (3) | 0.0736 (14) | |
H105 | 0.4805 | 0.4349 | 0.2668 | 0.088* | |
N111 | 0.1559 (3) | −0.0054 (3) | 0.23431 (17) | 0.0399 (8) | |
C112 | 0.2831 (5) | 0.0475 (6) | 0.2541 (2) | 0.0615 (11) | |
C113 | 0.3660 (5) | −0.0195 (6) | 0.2592 (3) | 0.0729 (11) | |
H113 | 0.4530 | 0.0177 | 0.2742 | 0.087* | |
C114 | 0.3162 (6) | −0.1406 (6) | 0.2415 (3) | 0.0773 (11) | |
H114 | 0.3702 | −0.1862 | 0.2439 | 0.093* | |
C115 | 0.1875 (5) | −0.1972 (5) | 0.2200 (3) | 0.0701 (11) | |
H115 | 0.1530 | −0.2797 | 0.2068 | 0.084* | |
C116 | 0.1123 (5) | −0.1243 (5) | 0.2192 (2) | 0.0601 (11) | |
H116 | 0.0257 | −0.1607 | 0.2074 | 0.072* | |
N121 | 0.1488 (3) | 0.4485 (3) | 0.28738 (18) | 0.0466 (9) | |
N122 | 0.0756 (3) | 0.3555 (3) | 0.30654 (17) | 0.0356 (8) | |
C123 | 0.0213 (4) | 0.4013 (3) | 0.3519 (2) | 0.0342 (9) | |
C124 | 0.0617 (5) | 0.5260 (3) | 0.3634 (2) | 0.0520 (12) | |
H124 | 0.0394 | 0.5794 | 0.3929 | 0.062* | |
C125 | 0.1399 (5) | 0.5508 (4) | 0.3219 (3) | 0.0586 (14) | |
H125 | 0.1816 | 0.6269 | 0.3177 | 0.070* | |
N131 | −0.1018 (3) | 0.2033 (2) | 0.34729 (16) | 0.0283 (7) | |
C132 | −0.0718 (3) | 0.3205 (3) | 0.3761 (2) | 0.0319 (8) | |
C133 | −0.1314 (4) | 0.3614 (4) | 0.4241 (2) | 0.0435 (10) | |
H133 | −0.1082 | 0.4424 | 0.4444 | 0.052* | |
C134 | −0.2241 (4) | 0.2818 (4) | 0.4410 (2) | 0.0469 (11) | |
H134 | −0.2646 | 0.3079 | 0.4728 | 0.056* | |
C135 | −0.2566 (4) | 0.1626 (4) | 0.4103 (2) | 0.0400 (10) | |
H135 | −0.3207 | 0.1068 | 0.4198 | 0.048* | |
C136 | −0.1919 (3) | 0.1274 (3) | 0.3651 (2) | 0.0307 (8) | |
H136 | −0.2122 | 0.0464 | 0.3459 | 0.037* | |
N141 | 0.1166 (3) | 0.3611 (3) | 0.14883 (18) | 0.0446 (9) | |
N142 | 0.0488 (3) | 0.2444 (3) | 0.13829 (17) | 0.0345 (7) | |
C143 | −0.0178 (3) | 0.2071 (3) | 0.0635 (2) | 0.0333 (9) | |
C144 | 0.0063 (4) | 0.2998 (4) | 0.0249 (2) | 0.0453 (11) | |
H144 | −0.0282 | 0.2975 | −0.0273 | 0.054* | |
C145 | 0.0917 (4) | 0.3948 (4) | 0.0806 (2) | 0.0526 (12) | |
H145 | 0.1269 | 0.4703 | 0.0727 | 0.063* | |
N151 | −0.0974 (3) | 0.0173 (3) | 0.09259 (16) | 0.0308 (7) | |
C152 | −0.0963 (3) | 0.0808 (3) | 0.03713 (19) | 0.0289 (8) | |
C153 | −0.1649 (3) | 0.0295 (4) | −0.0397 (2) | 0.0374 (9) | |
H153 | −0.1642 | 0.0752 | −0.0770 | 0.045* | |
C154 | −0.2338 (4) | −0.0890 (4) | −0.0601 (2) | 0.0418 (10) | |
H154 | −0.2795 | −0.1246 | −0.1114 | 0.050* | |
C155 | −0.2350 (4) | −0.1552 (4) | −0.0039 (2) | 0.0434 (10) | |
H155 | −0.2803 | −0.2361 | −0.0165 | 0.052* | |
C156 | −0.1670 (4) | −0.0980 (3) | 0.0714 (2) | 0.0380 (9) | |
H156 | −0.1697 | −0.1418 | 0.1095 | 0.046* | |
C11 | −0.2929 (3) | 0.3395 (3) | 0.13755 (19) | 0.0304 (8) | |
C12 | −0.4145 (4) | 0.3483 (3) | 0.1162 (2) | 0.0364 (9) | |
H12 | −0.4818 | 0.2855 | 0.1170 | 0.044* | |
C13 | −0.4363 (4) | 0.4495 (4) | 0.0940 (2) | 0.0484 (11) | |
H13 | −0.5180 | 0.4544 | 0.0799 | 0.058* | |
C14 | −0.3376 (5) | 0.5432 (4) | 0.0925 (2) | 0.0509 (12) | |
H14 | −0.3528 | 0.6109 | 0.0772 | 0.061* | |
C15 | −0.2171 (4) | 0.5363 (3) | 0.1135 (2) | 0.0450 (10) | |
H15 | −0.1506 | 0.5992 | 0.1122 | 0.054* | |
C16 | −0.1941 (4) | 0.4355 (3) | 0.1368 (2) | 0.0360 (9) | |
H16 | −0.1118 | 0.4322 | 0.1520 | 0.043* | |
O21 | −0.1480 (2) | 0.2427 (2) | 0.18909 (13) | 0.0298 (6) | |
C22 | −0.2633 (3) | 0.2304 (3) | 0.15983 (18) | 0.0262 (8) | |
C23 | −0.3604 (3) | 0.1223 (3) | 0.1448 (2) | 0.0305 (8) | |
H23 | −0.4437 | 0.1197 | 0.1217 | 0.037* | |
C24 | −0.3370 (3) | 0.0185 (3) | 0.16304 (18) | 0.0229 (7) | |
O25 | −0.2295 (2) | 0.01301 (19) | 0.19963 (13) | 0.0265 (5) | |
C31 | −0.4428 (3) | −0.0978 (3) | 0.13840 (19) | 0.0253 (8) | |
C32 | −0.5539 (3) | −0.1204 (3) | 0.0768 (2) | 0.0342 (9) | |
H32 | −0.5669 | −0.0604 | 0.0507 | 0.041* | |
C33 | −0.6450 (4) | −0.2314 (4) | 0.0543 (3) | 0.0488 (12) | |
H33 | −0.7189 | −0.2461 | 0.0130 | 0.059* | |
C34 | −0.6261 (4) | −0.3199 (4) | 0.0927 (3) | 0.0590 (14) | |
H34 | −0.6870 | −0.3949 | 0.0770 | 0.071* | |
C35 | −0.5179 (4) | −0.2987 (3) | 0.1545 (3) | 0.0492 (11) | |
H35 | −0.5067 | −0.3587 | 0.1809 | 0.059* | |
C36 | −0.4256 (3) | −0.1881 (3) | 0.1772 (2) | 0.0340 (9) | |
H36 | −0.3521 | −0.1742 | 0.2186 | 0.041* | |
C41 | −0.0853 (3) | −0.2001 (3) | 0.3697 (2) | 0.0322 (8) | |
C42 | −0.0834 (4) | −0.2241 (4) | 0.4411 (2) | 0.0440 (10) | |
H42 | −0.0266 | −0.1698 | 0.4854 | 0.053* | |
C43 | −0.1654 (4) | −0.3283 (4) | 0.4473 (2) | 0.0486 (11) | |
H43 | −0.1649 | −0.3422 | 0.4956 | 0.058* | |
C44 | −0.2473 (4) | −0.4110 (4) | 0.3828 (2) | 0.0426 (10) | |
H44 | −0.3027 | −0.4804 | 0.3872 | 0.051* | |
C45 | −0.2469 (4) | −0.3905 (3) | 0.3110 (2) | 0.0415 (10) | |
H45 | −0.2996 | −0.4477 | 0.2671 | 0.050* | |
C46 | −0.1681 (3) | −0.2850 (3) | 0.3047 (2) | 0.0336 (9) | |
H46 | −0.1705 | −0.2706 | 0.2562 | 0.040* | |
O51 | −0.0531 (2) | −0.0478 (2) | 0.30078 (13) | 0.0276 (5) | |
C52 | −0.0054 (3) | −0.0838 (3) | 0.36064 (18) | 0.0295 (7) | |
C53 | 0.1054 (5) | −0.0086 (6) | 0.4198 (4) | 0.0266 (14) | 0.514 (3) |
H53 | 0.1333 | −0.0402 | 0.4626 | 0.032* | 0.514 (3) |
C54 | 0.1788 (5) | 0.1078 (6) | 0.4223 (4) | 0.0256 (16) | 0.514 (3) |
O55 | 0.151 (3) | 0.1707 (15) | 0.3743 (9) | 0.023 (3) | 0.514 (3) |
C61 | 0.3019 (3) | 0.1745 (4) | 0.4867 (2) | 0.0320 (10) | 0.514 (3) |
C62 | 0.3263 (4) | 0.1466 (4) | 0.5592 (2) | 0.0334 (12) | 0.514 (3) |
H62 | 0.2663 | 0.0816 | 0.5683 | 0.040* | 0.514 (3) |
C63 | 0.4374 (4) | 0.2128 (4) | 0.61836 (19) | 0.0399 (13) | 0.514 (3) |
H63 | 0.4542 | 0.1935 | 0.6684 | 0.048* | 0.514 (3) |
C64 | 0.5242 (3) | 0.3069 (4) | 0.6052 (2) | 0.0432 (12) | 0.514 (3) |
H64 | 0.6009 | 0.3526 | 0.6461 | 0.052* | 0.514 (3) |
C65 | 0.4998 (4) | 0.3348 (4) | 0.5328 (3) | 0.0418 (11) | 0.514 (3) |
H65 | 0.5597 | 0.3999 | 0.5236 | 0.050* | 0.514 (3) |
C66 | 0.3887 (4) | 0.2687 (4) | 0.4736 (2) | 0.0370 (11) | 0.514 (3) |
H66 | 0.3719 | 0.2879 | 0.4235 | 0.044* | 0.514 (3) |
C53' | 0.1205 (5) | −0.0435 (7) | 0.4088 (5) | 0.0275 (15) | 0.486 (3) |
H53' | 0.1534 | −0.0910 | 0.4399 | 0.033* | 0.486 (3) |
C54' | 0.1961 (5) | 0.0697 (7) | 0.4093 (5) | 0.0277 (18) | 0.486 (3) |
O55' | 0.155 (3) | 0.1394 (16) | 0.3710 (10) | 0.023 (3) | 0.486 (3) |
C61' | 0.3337 (3) | 0.1051 (4) | 0.4571 (3) | 0.0313 (11) | 0.486 (3) |
C62' | 0.3943 (4) | 0.0206 (3) | 0.4731 (3) | 0.0305 (12) | 0.486 (3) |
H62' | 0.3488 | −0.0624 | 0.4522 | 0.037* | 0.486 (3) |
C63' | 0.5209 (4) | 0.0563 (4) | 0.5193 (3) | 0.0350 (13) | 0.486 (3) |
H63' | 0.5627 | −0.0021 | 0.5303 | 0.042* | 0.486 (3) |
C64' | 0.5868 (3) | 0.1765 (4) | 0.5495 (3) | 0.0408 (13) | 0.486 (3) |
H64' | 0.6742 | 0.2012 | 0.5814 | 0.049* | 0.486 (3) |
C65' | 0.5262 (4) | 0.2611 (3) | 0.5335 (3) | 0.0422 (11) | 0.486 (3) |
H65' | 0.5717 | 0.3441 | 0.5543 | 0.051* | 0.486 (3) |
C66' | 0.3997 (4) | 0.2253 (4) | 0.4873 (3) | 0.0381 (11) | 0.486 (3) |
H66' | 0.3578 | 0.2837 | 0.4762 | 0.046* | 0.486 (3) |
U11 | U22 | U33 | U12 | U13 | U23 | |
Pr1 | 0.01723 (10) | 0.02729 (11) | 0.02189 (11) | 0.00235 (7) | 0.00419 (7) | 0.00511 (7) |
B1 | 0.043 (3) | 0.051 (3) | 0.039 (3) | −0.026 (2) | 0.004 (2) | 0.014 (2) |
N101 | 0.0239 (16) | 0.077 (2) | 0.0308 (16) | −0.0162 (15) | 0.0068 (13) | 0.0091 (16) |
N102 | 0.0204 (15) | 0.072 (2) | 0.0273 (15) | −0.0019 (14) | 0.0058 (12) | 0.0114 (15) |
C103 | 0.0197 (17) | 0.128 (4) | 0.0240 (18) | 0.017 (2) | 0.0079 (15) | 0.020 (2) |
C104 | 0.0200 (16) | 0.143 (3) | 0.0313 (18) | 0.006 (2) | 0.0061 (14) | 0.016 (2) |
C105 | 0.025 (2) | 0.138 (4) | 0.035 (2) | −0.006 (2) | 0.0050 (17) | 0.019 (3) |
N111 | 0.041 (2) | 0.066 (2) | 0.0292 (18) | 0.0349 (18) | 0.0164 (15) | 0.0205 (17) |
C112 | 0.056 (2) | 0.134 (3) | 0.032 (2) | 0.066 (2) | 0.0275 (18) | 0.040 (2) |
C113 | 0.070 (2) | 0.139 (3) | 0.047 (2) | 0.072 (2) | 0.0330 (18) | 0.040 (2) |
C114 | 0.089 (2) | 0.133 (3) | 0.056 (2) | 0.084 (2) | 0.0384 (19) | 0.043 (2) |
C115 | 0.096 (2) | 0.111 (3) | 0.053 (2) | 0.077 (2) | 0.046 (2) | 0.045 (2) |
C116 | 0.090 (3) | 0.098 (3) | 0.042 (2) | 0.071 (2) | 0.045 (2) | 0.045 (2) |
N121 | 0.049 (2) | 0.035 (2) | 0.0305 (18) | −0.0170 (16) | 0.0043 (16) | 0.0083 (15) |
N122 | 0.0348 (18) | 0.0271 (17) | 0.0315 (17) | −0.0067 (14) | 0.0056 (14) | 0.0089 (14) |
C123 | 0.041 (2) | 0.027 (2) | 0.0257 (19) | 0.0062 (17) | 0.0022 (17) | 0.0052 (16) |
C124 | 0.078 (3) | 0.023 (2) | 0.039 (2) | 0.002 (2) | 0.009 (2) | 0.0057 (18) |
C125 | 0.078 (3) | 0.023 (2) | 0.041 (3) | −0.012 (2) | −0.003 (2) | 0.0046 (19) |
N131 | 0.0326 (17) | 0.0252 (16) | 0.0268 (16) | 0.0096 (13) | 0.0087 (13) | 0.0070 (13) |
C132 | 0.036 (2) | 0.030 (2) | 0.0261 (19) | 0.0127 (17) | 0.0008 (16) | 0.0090 (16) |
C133 | 0.051 (3) | 0.040 (2) | 0.036 (2) | 0.024 (2) | 0.005 (2) | −0.0028 (18) |
C134 | 0.046 (3) | 0.065 (3) | 0.037 (2) | 0.026 (2) | 0.019 (2) | 0.006 (2) |
C135 | 0.035 (2) | 0.056 (3) | 0.032 (2) | 0.0142 (19) | 0.0125 (17) | 0.0127 (19) |
C136 | 0.034 (2) | 0.032 (2) | 0.030 (2) | 0.0116 (16) | 0.0138 (16) | 0.0114 (16) |
N141 | 0.0343 (18) | 0.050 (2) | 0.0327 (18) | −0.0135 (16) | 0.0097 (15) | 0.0134 (16) |
N142 | 0.0218 (16) | 0.0427 (19) | 0.0282 (17) | −0.0057 (14) | 0.0062 (13) | 0.0098 (14) |
C143 | 0.0192 (18) | 0.051 (2) | 0.027 (2) | 0.0054 (17) | 0.0081 (15) | 0.0092 (17) |
C144 | 0.036 (2) | 0.062 (3) | 0.027 (2) | −0.002 (2) | 0.0090 (18) | 0.018 (2) |
C145 | 0.041 (2) | 0.063 (3) | 0.041 (3) | −0.009 (2) | 0.013 (2) | 0.028 (2) |
N151 | 0.0270 (16) | 0.0388 (18) | 0.0240 (16) | 0.0117 (14) | 0.0043 (13) | 0.0053 (14) |
C152 | 0.0210 (18) | 0.043 (2) | 0.0235 (18) | 0.0097 (16) | 0.0081 (15) | 0.0075 (16) |
C153 | 0.033 (2) | 0.054 (3) | 0.025 (2) | 0.0111 (19) | 0.0105 (17) | 0.0129 (18) |
C154 | 0.044 (2) | 0.052 (3) | 0.0207 (19) | 0.011 (2) | 0.0041 (17) | 0.0005 (18) |
C155 | 0.049 (3) | 0.037 (2) | 0.035 (2) | 0.0108 (19) | 0.0059 (19) | −0.0013 (18) |
C156 | 0.046 (2) | 0.039 (2) | 0.029 (2) | 0.0180 (19) | 0.0085 (18) | 0.0074 (17) |
C11 | 0.041 (2) | 0.0281 (19) | 0.0248 (19) | 0.0121 (17) | 0.0126 (16) | 0.0083 (15) |
C12 | 0.041 (2) | 0.033 (2) | 0.040 (2) | 0.0171 (18) | 0.0146 (18) | 0.0113 (17) |
C13 | 0.058 (3) | 0.047 (3) | 0.055 (3) | 0.032 (2) | 0.022 (2) | 0.021 (2) |
C14 | 0.085 (4) | 0.039 (3) | 0.047 (3) | 0.037 (2) | 0.028 (2) | 0.020 (2) |
C15 | 0.064 (3) | 0.030 (2) | 0.046 (3) | 0.012 (2) | 0.027 (2) | 0.0137 (19) |
C16 | 0.043 (2) | 0.031 (2) | 0.036 (2) | 0.0111 (18) | 0.0165 (18) | 0.0091 (17) |
O21 | 0.0233 (13) | 0.0276 (13) | 0.0351 (14) | 0.0036 (10) | 0.0067 (11) | 0.0117 (11) |
C22 | 0.031 (2) | 0.0297 (19) | 0.0204 (17) | 0.0109 (16) | 0.0110 (15) | 0.0077 (15) |
C23 | 0.0183 (17) | 0.034 (2) | 0.034 (2) | 0.0069 (15) | 0.0025 (15) | 0.0084 (16) |
C24 | 0.0191 (17) | 0.0275 (18) | 0.0207 (17) | 0.0052 (14) | 0.0076 (14) | 0.0031 (14) |
O25 | 0.0205 (12) | 0.0272 (13) | 0.0288 (13) | 0.0062 (10) | 0.0038 (10) | 0.0090 (10) |
C31 | 0.0218 (18) | 0.0254 (18) | 0.0282 (19) | 0.0044 (14) | 0.0124 (15) | 0.0011 (15) |
C32 | 0.0221 (19) | 0.040 (2) | 0.033 (2) | 0.0021 (16) | 0.0074 (16) | −0.0019 (17) |
C33 | 0.024 (2) | 0.050 (3) | 0.052 (3) | −0.0031 (19) | 0.0078 (19) | −0.018 (2) |
C34 | 0.034 (2) | 0.033 (2) | 0.098 (4) | −0.0083 (19) | 0.032 (3) | −0.014 (3) |
C35 | 0.047 (3) | 0.025 (2) | 0.086 (3) | 0.0094 (19) | 0.038 (3) | 0.014 (2) |
C36 | 0.031 (2) | 0.029 (2) | 0.046 (2) | 0.0090 (16) | 0.0197 (18) | 0.0068 (17) |
C41 | 0.0243 (19) | 0.045 (2) | 0.032 (2) | 0.0155 (17) | 0.0080 (16) | 0.0195 (18) |
C42 | 0.028 (2) | 0.067 (3) | 0.029 (2) | 0.004 (2) | 0.0030 (17) | 0.020 (2) |
C43 | 0.035 (2) | 0.073 (3) | 0.037 (2) | 0.008 (2) | 0.0113 (19) | 0.033 (2) |
C44 | 0.035 (2) | 0.044 (2) | 0.051 (3) | 0.0112 (19) | 0.013 (2) | 0.025 (2) |
C45 | 0.046 (2) | 0.032 (2) | 0.043 (2) | 0.0098 (19) | 0.0112 (19) | 0.0087 (18) |
C46 | 0.040 (2) | 0.036 (2) | 0.031 (2) | 0.0182 (18) | 0.0136 (17) | 0.0132 (17) |
O51 | 0.0270 (13) | 0.0293 (13) | 0.0238 (13) | 0.0099 (10) | 0.0034 (10) | 0.0064 (10) |
C52 | 0.0228 (14) | 0.045 (2) | 0.0262 (16) | 0.0154 (14) | 0.0092 (12) | 0.0142 (15) |
C53 | 0.021 (2) | 0.043 (3) | 0.024 (2) | 0.018 (2) | 0.0078 (19) | 0.016 (2) |
C54 | 0.020 (3) | 0.044 (3) | 0.021 (3) | 0.015 (2) | 0.011 (2) | 0.011 (3) |
O55 | 0.029 (4) | 0.012 (8) | 0.022 (4) | −0.001 (6) | 0.007 (3) | −0.003 (4) |
C61 | 0.0239 (18) | 0.041 (2) | 0.0281 (18) | 0.0114 (16) | 0.0042 (16) | 0.0041 (17) |
C62 | 0.027 (2) | 0.041 (2) | 0.028 (2) | 0.0138 (19) | 0.0008 (19) | 0.0035 (19) |
C63 | 0.032 (2) | 0.046 (3) | 0.032 (2) | 0.014 (2) | −0.0028 (19) | 0.001 (2) |
C64 | 0.030 (2) | 0.050 (2) | 0.037 (2) | 0.0093 (18) | −0.0006 (18) | −0.0030 (19) |
C65 | 0.0284 (19) | 0.048 (2) | 0.0375 (18) | 0.0061 (17) | 0.0041 (17) | −0.0007 (18) |
C66 | 0.0264 (18) | 0.045 (2) | 0.0319 (18) | 0.0068 (17) | 0.0050 (16) | 0.0024 (18) |
C53' | 0.020 (2) | 0.044 (3) | 0.026 (3) | 0.017 (2) | 0.009 (2) | 0.016 (2) |
C54' | 0.019 (3) | 0.045 (4) | 0.022 (3) | 0.013 (2) | 0.007 (2) | 0.011 (3) |
O55' | 0.025 (4) | 0.011 (8) | 0.026 (4) | 0.002 (6) | 0.006 (3) | −0.003 (5) |
C61' | 0.0231 (19) | 0.042 (2) | 0.027 (2) | 0.0097 (17) | 0.0067 (17) | 0.0061 (19) |
C62' | 0.022 (2) | 0.043 (2) | 0.027 (2) | 0.0094 (19) | 0.0099 (19) | 0.009 (2) |
C63' | 0.023 (2) | 0.050 (2) | 0.031 (2) | 0.010 (2) | 0.010 (2) | 0.007 (2) |
C64' | 0.026 (2) | 0.052 (2) | 0.035 (2) | 0.0081 (19) | 0.004 (2) | 0.001 (2) |
C65' | 0.0281 (17) | 0.049 (2) | 0.0374 (18) | 0.0073 (16) | 0.0025 (16) | −0.0008 (18) |
C66' | 0.0269 (17) | 0.045 (2) | 0.0340 (18) | 0.0086 (17) | 0.0033 (16) | 0.0012 (17) |
Pr1—O55 | 2.448 (17) | C12—C13 | 1.382 (5) |
Pr1—O25 | 2.454 (2) | C12—H12 | 0.9300 |
Pr1—O51 | 2.464 (2) | C13—C14 | 1.377 (6) |
Pr1—O55' | 2.492 (17) | C13—H13 | 0.9300 |
Pr1—O21 | 2.496 (2) | C14—C15 | 1.370 (6) |
Pr1—N122 | 2.595 (3) | C14—H14 | 0.9300 |
Pr1—N142 | 2.656 (3) | C15—C16 | 1.388 (5) |
Pr1—N131 | 2.656 (3) | C15—H15 | 0.9300 |
Pr1—N102 | 2.704 (3) | C16—H16 | 0.9300 |
Pr1—N151 | 2.754 (3) | O21—C22 | 1.254 (4) |
Pr1—N111 | 2.804 (3) | C22—C23 | 1.401 (5) |
B1—N121 | 1.526 (7) | C23—C24 | 1.395 (5) |
B1—N101 | 1.545 (7) | C23—H23 | 0.9300 |
B1—N141 | 1.557 (5) | C24—O25 | 1.262 (4) |
B1—H1 | 1.0653 | C24—C31 | 1.501 (4) |
N101—C105 | 1.353 (6) | C31—C36 | 1.389 (5) |
N101—N102 | 1.367 (5) | C31—C32 | 1.393 (5) |
N102—C103 | 1.324 (6) | C32—C33 | 1.382 (5) |
C103—C104 | 1.418 (6) | C32—H32 | 0.9300 |
C103—C112 | 1.460 (7) | C33—C34 | 1.371 (7) |
C104—C105 | 1.344 (8) | C33—H33 | 0.9300 |
C104—H104 | 0.9300 | C34—C35 | 1.375 (6) |
C105—H105 | 0.9300 | C34—H34 | 0.9300 |
N111—C116 | 1.337 (6) | C35—C36 | 1.384 (5) |
N111—C112 | 1.360 (6) | C35—H35 | 0.9300 |
C112—C113 | 1.399 (6) | C36—H36 | 0.9300 |
C113—C114 | 1.364 (8) | C41—C42 | 1.384 (5) |
C113—H113 | 0.9300 | C41—C46 | 1.389 (5) |
C114—C115 | 1.379 (8) | C41—C52 | 1.504 (5) |
C114—H114 | 0.9300 | C42—C43 | 1.387 (6) |
C115—C116 | 1.388 (6) | C42—H42 | 0.9300 |
C115—H115 | 0.9300 | C43—C44 | 1.370 (6) |
C116—H116 | 0.9300 | C43—H43 | 0.9300 |
N121—N122 | 1.354 (4) | C44—C45 | 1.383 (5) |
N121—C125 | 1.356 (6) | C44—H44 | 0.9300 |
N122—C123 | 1.340 (5) | C45—C46 | 1.382 (5) |
C123—C124 | 1.403 (5) | C45—H45 | 0.9300 |
C123—C132 | 1.455 (5) | C46—H46 | 0.9300 |
C124—C125 | 1.348 (7) | O51—C52 | 1.269 (4) |
C124—H124 | 0.9300 | C52—C53' | 1.392 (5) |
C125—H125 | 0.9300 | C52—C53 | 1.416 (5) |
N131—C136 | 1.336 (4) | C53—C54 | 1.407 (5) |
N131—C132 | 1.348 (4) | C53—H53 | 0.9300 |
C132—C133 | 1.398 (5) | C54—O55 | 1.256 (5) |
C133—C134 | 1.369 (6) | C54—C61 | 1.515 (5) |
C133—H133 | 0.9300 | C61—C62 | 1.3900 |
C134—C135 | 1.375 (6) | C61—C66 | 1.3900 |
C134—H134 | 0.9300 | C62—C63 | 1.3900 |
C135—C136 | 1.378 (5) | C62—H62 | 0.9601 |
C135—H135 | 0.9300 | C63—C64 | 1.3900 |
C136—H136 | 0.9300 | C63—H63 | 0.9600 |
N141—C145 | 1.348 (5) | C64—C65 | 1.3900 |
N141—N142 | 1.361 (4) | C64—H64 | 0.9601 |
N142—C143 | 1.334 (4) | C65—C66 | 1.3900 |
C143—C144 | 1.394 (5) | C65—H65 | 0.9600 |
C143—C152 | 1.474 (5) | C66—H66 | 0.9600 |
C144—C145 | 1.369 (6) | C53'—C54' | 1.396 (5) |
C144—H144 | 0.9300 | C53'—H53' | 0.9300 |
C145—H145 | 0.9300 | C54'—O55' | 1.256 (5) |
N151—C156 | 1.339 (5) | C54'—C61' | 1.503 (4) |
N151—C152 | 1.347 (4) | C61'—C62' | 1.3900 |
C152—C153 | 1.387 (5) | C61'—C66' | 1.3900 |
C153—C154 | 1.368 (5) | C62'—C63' | 1.3900 |
C153—H153 | 0.9300 | C62'—H62' | 0.9601 |
C154—C155 | 1.379 (6) | C63'—C64' | 1.3900 |
C154—H154 | 0.9300 | C63'—H63' | 0.9600 |
C155—C156 | 1.378 (5) | C64'—C65' | 1.3900 |
C155—H155 | 0.9300 | C64'—H64' | 0.9600 |
C156—H156 | 0.9300 | C65'—C66' | 1.3900 |
C11—C12 | 1.391 (5) | C65'—H65' | 0.9600 |
C11—C16 | 1.391 (5) | C66'—H66' | 0.9601 |
C11—C22 | 1.504 (5) | ||
O55—Pr1—O25 | 128.4 (6) | C156—N151—C152 | 117.8 (3) |
O55—Pr1—O51 | 71.7 (5) | C156—N151—Pr1 | 120.2 (2) |
O25—Pr1—O51 | 65.89 (7) | C152—N151—Pr1 | 120.6 (2) |
O55—Pr1—O55' | 9.0 (6) | N151—C152—C153 | 121.6 (3) |
O25—Pr1—O55' | 126.1 (6) | N151—C152—C143 | 115.7 (3) |
O51—Pr1—O55' | 65.2 (5) | C153—C152—C143 | 122.7 (3) |
O55—Pr1—O21 | 129.8 (4) | C154—C153—C152 | 119.5 (4) |
O25—Pr1—O21 | 65.98 (7) | C154—C153—H153 | 120.3 |
O51—Pr1—O21 | 128.16 (7) | C152—C153—H153 | 120.3 |
O55'—Pr1—O21 | 138.5 (4) | C153—C154—C155 | 119.5 (3) |
O55—Pr1—N122 | 69.4 (3) | C153—C154—H154 | 120.2 |
O25—Pr1—N122 | 121.82 (9) | C155—C154—H154 | 120.2 |
O51—Pr1—N122 | 131.58 (8) | C156—C155—C154 | 118.0 (4) |
O55'—Pr1—N122 | 78.1 (4) | C156—C155—H155 | 121.0 |
O21—Pr1—N122 | 65.02 (9) | C154—C155—H155 | 121.0 |
O55—Pr1—N142 | 121.4 (6) | N151—C156—C155 | 123.6 (4) |
O25—Pr1—N142 | 109.44 (8) | N151—C156—H156 | 118.2 |
O51—Pr1—N142 | 154.01 (9) | C155—C156—H156 | 118.2 |
O55'—Pr1—N142 | 124.5 (7) | C12—C11—C16 | 118.3 (3) |
O21—Pr1—N142 | 63.44 (9) | C12—C11—C22 | 123.3 (3) |
N122—Pr1—N142 | 73.55 (9) | C16—C11—C22 | 118.4 (3) |
O55—Pr1—N131 | 71.2 (6) | C13—C12—C11 | 120.6 (4) |
O25—Pr1—N131 | 73.08 (8) | C13—C12—H12 | 119.7 |
O51—Pr1—N131 | 79.07 (8) | C11—C12—H12 | 119.7 |
O55'—Pr1—N131 | 76.8 (6) | C14—C13—C12 | 120.4 (4) |
O21—Pr1—N131 | 69.66 (8) | C14—C13—H13 | 119.8 |
N122—Pr1—N131 | 61.99 (9) | C12—C13—H13 | 119.8 |
N142—Pr1—N131 | 125.31 (9) | C15—C14—C13 | 119.8 (4) |
O55—Pr1—N102 | 65.5 (6) | C15—C14—H14 | 120.1 |
O25—Pr1—N102 | 163.61 (8) | C13—C14—H14 | 120.1 |
O51—Pr1—N102 | 117.95 (9) | C14—C15—C16 | 120.2 (4) |
O55'—Pr1—N102 | 66.0 (7) | C14—C15—H15 | 119.9 |
O21—Pr1—N102 | 113.69 (9) | C16—C15—H15 | 119.9 |
N122—Pr1—N102 | 68.87 (11) | C15—C16—C11 | 120.6 (4) |
N142—Pr1—N102 | 59.51 (9) | C15—C16—H16 | 119.7 |
N131—Pr1—N102 | 122.86 (9) | C11—C16—H16 | 119.7 |
O55—Pr1—N151 | 150.3 (5) | C22—O21—Pr1 | 141.2 (2) |
O25—Pr1—N151 | 65.76 (8) | O21—C22—C23 | 123.6 (3) |
O51—Pr1—N151 | 98.08 (8) | O21—C22—C11 | 115.6 (3) |
O55'—Pr1—N151 | 142.4 (4) | C23—C22—C11 | 120.8 (3) |
O21—Pr1—N151 | 78.77 (8) | C24—C23—C22 | 122.7 (3) |
N122—Pr1—N151 | 129.64 (9) | C24—C23—H23 | 118.7 |
N142—Pr1—N151 | 58.98 (9) | C22—C23—H23 | 118.7 |
N131—Pr1—N151 | 135.59 (9) | O25—C24—C23 | 124.5 (3) |
N102—Pr1—N151 | 97.90 (9) | O25—C24—C31 | 115.0 (3) |
O55—Pr1—N111 | 74.0 (5) | C23—C24—C31 | 120.5 (3) |
O25—Pr1—N111 | 113.86 (9) | C24—O25—Pr1 | 141.4 (2) |
O51—Pr1—N111 | 68.63 (9) | C36—C31—C32 | 119.0 (3) |
O55'—Pr1—N111 | 66.3 (5) | C36—C31—C24 | 117.9 (3) |
O21—Pr1—N111 | 151.93 (8) | C32—C31—C24 | 123.1 (3) |
N122—Pr1—N111 | 124.18 (10) | C33—C32—C31 | 120.3 (4) |
N142—Pr1—N111 | 92.39 (10) | C33—C32—H32 | 119.8 |
N131—Pr1—N111 | 138.32 (9) | C31—C32—H32 | 119.8 |
N102—Pr1—N111 | 58.02 (11) | C34—C33—C32 | 119.9 (4) |
N151—Pr1—N111 | 76.31 (9) | C34—C33—H33 | 120.0 |
N121—B1—N101 | 110.0 (4) | C32—C33—H33 | 120.0 |
N121—B1—N141 | 111.1 (4) | C33—C34—C35 | 120.5 (4) |
N101—B1—N141 | 106.5 (4) | C33—C34—H34 | 119.7 |
N121—B1—H1 | 105.2 | C35—C34—H34 | 119.7 |
N101—B1—H1 | 115.6 | C34—C35—C36 | 120.1 (4) |
N141—B1—H1 | 108.5 | C34—C35—H35 | 120.0 |
C105—N101—N102 | 108.5 (4) | C36—C35—H35 | 120.0 |
C105—N101—B1 | 131.1 (4) | C35—C36—C31 | 120.1 (4) |
N102—N101—B1 | 119.0 (3) | C35—C36—H36 | 120.0 |
C103—N102—N101 | 107.5 (3) | C31—C36—H36 | 120.0 |
C103—N102—Pr1 | 125.1 (3) | C42—C41—C46 | 118.2 (4) |
N101—N102—Pr1 | 127.4 (3) | C42—C41—C52 | 122.1 (3) |
N102—C103—C104 | 109.2 (5) | C46—C41—C52 | 119.6 (3) |
N102—C103—C112 | 117.9 (4) | C41—C42—C43 | 120.6 (4) |
C104—C103—C112 | 132.4 (5) | C41—C42—H42 | 119.7 |
C105—C104—C103 | 105.2 (5) | C43—C42—H42 | 119.7 |
C105—C104—H104 | 127.4 | C44—C43—C42 | 120.6 (4) |
C103—C104—H104 | 127.4 | C44—C43—H43 | 119.7 |
C104—C105—N101 | 109.5 (5) | C42—C43—H43 | 119.7 |
C104—C105—H105 | 125.3 | C43—C44—C45 | 119.5 (4) |
N101—C105—H105 | 125.3 | C43—C44—H44 | 120.3 |
C116—N111—C112 | 117.5 (4) | C45—C44—H44 | 120.3 |
C116—N111—Pr1 | 121.0 (3) | C46—C45—C44 | 119.9 (4) |
C112—N111—Pr1 | 120.9 (3) | C46—C45—H45 | 120.0 |
N111—C112—C113 | 121.6 (6) | C44—C45—H45 | 120.0 |
N111—C112—C103 | 115.8 (4) | C45—C46—C41 | 121.1 (4) |
C113—C112—C103 | 122.4 (5) | C45—C46—H46 | 119.5 |
C114—C113—C112 | 118.4 (6) | C41—C46—H46 | 119.5 |
C114—C113—H113 | 120.8 | C52—O51—Pr1 | 138.1 (2) |
C112—C113—H113 | 120.8 | O51—C52—C53' | 127.2 (5) |
C113—C114—C115 | 121.5 (5) | O51—C52—C53 | 120.7 (4) |
C113—C114—H114 | 119.2 | O51—C52—C41 | 115.5 (3) |
C115—C114—H114 | 119.2 | C53'—C52—C41 | 115.6 (4) |
C114—C115—C116 | 116.5 (6) | C53—C52—C41 | 123.0 (4) |
C114—C115—H115 | 121.8 | C54—C53—C52 | 128.5 (6) |
C116—C115—H115 | 121.8 | C54—C53—H53 | 115.8 |
N111—C116—C115 | 124.4 (5) | C52—C53—H53 | 115.8 |
N111—C116—H116 | 117.8 | O55—C54—C53 | 125.8 (12) |
C115—C116—H116 | 117.8 | O55—C54—C61 | 111.4 (12) |
N122—N121—C125 | 108.6 (4) | C53—C54—C61 | 122.8 (5) |
N122—N121—B1 | 120.9 (3) | C54—O55—Pr1 | 134.2 (14) |
C125—N121—B1 | 130.2 (4) | C62—C61—C66 | 120.0 |
C123—N122—N121 | 106.9 (3) | C62—C61—C54 | 121.1 (4) |
C123—N122—Pr1 | 121.5 (2) | C66—C61—C54 | 118.8 (4) |
N121—N122—Pr1 | 129.8 (2) | C54—C61—H66' | 112.5 |
N122—C123—C124 | 110.1 (4) | C61—C62—C63 | 120.0 |
N122—C123—C132 | 118.9 (3) | C61—C62—H62 | 120.0 |
C124—C123—C132 | 130.9 (4) | C63—C62—H62 | 120.0 |
C125—C124—C123 | 104.5 (4) | C62—C63—C64 | 120.0 |
C125—C124—H124 | 127.8 | C62—C63—H63 | 120.0 |
C123—C124—H124 | 127.8 | C64—C63—H63 | 120.0 |
C124—C125—N121 | 110.0 (4) | C65—C64—C63 | 120.0 |
C124—C125—H125 | 125.0 | C65—C64—H64 | 120.0 |
N121—C125—H125 | 125.0 | C63—C64—H64 | 120.0 |
C136—N131—C132 | 117.9 (3) | C64—C65—C66 | 120.0 |
C136—N131—Pr1 | 121.3 (2) | C64—C65—H65 | 120.0 |
C132—N131—Pr1 | 120.4 (2) | C66—C65—H65 | 120.0 |
N131—C132—C133 | 121.2 (4) | C65—C66—C61 | 120.0 |
N131—C132—C123 | 116.5 (3) | C65—C66—H66 | 120.0 |
C133—C132—C123 | 122.2 (3) | C61—C66—H66 | 120.0 |
C134—C133—C132 | 119.7 (4) | C65—C66—H66' | 107.0 |
C134—C133—H133 | 120.2 | C52—C53'—C54' | 118.5 (6) |
C132—C133—H133 | 120.2 | C52—C53'—H53' | 120.7 |
C133—C134—C135 | 119.0 (4) | C54'—C53'—H53' | 120.7 |
C133—C134—H134 | 120.5 | O55'—C54'—C53' | 123.3 (14) |
C135—C134—H134 | 120.5 | O55'—C54'—C61' | 120.2 (14) |
C134—C135—C136 | 118.6 (4) | C53'—C54'—C61' | 116.5 (5) |
C134—C135—H135 | 120.7 | C54'—O55'—Pr1 | 139.0 (14) |
C136—C135—H135 | 120.7 | C62'—C61'—C66' | 120.0 |
N131—C136—C135 | 123.6 (4) | C62'—C61'—C54' | 121.5 (4) |
N131—C136—H136 | 118.2 | C66'—C61'—C54' | 118.4 (4) |
C135—C136—H136 | 118.2 | C61'—C62'—C63' | 120.0 |
C145—N141—N142 | 109.2 (3) | C61'—C62'—H62' | 120.0 |
C145—N141—B1 | 131.0 (3) | C63'—C62'—H62' | 120.0 |
N142—N141—B1 | 119.5 (3) | C62'—C63'—C64' | 120.0 |
C143—N142—N141 | 106.8 (3) | C62'—C63'—H63' | 120.0 |
C143—N142—Pr1 | 123.5 (2) | C64'—C63'—H63' | 120.0 |
N141—N142—Pr1 | 127.0 (2) | C65'—C64'—C63' | 120.0 |
N142—C143—C144 | 110.2 (3) | C65'—C64'—H64' | 120.0 |
N142—C143—C152 | 117.0 (3) | C63'—C64'—H64' | 120.0 |
C144—C143—C152 | 132.7 (3) | C64'—C65'—C66' | 120.0 |
C145—C144—C143 | 104.9 (3) | C64'—C65'—H65' | 120.0 |
C145—C144—H144 | 127.5 | C66'—C65'—H65' | 120.0 |
C143—C144—H144 | 127.5 | C65'—C66'—C61' | 120.0 |
N141—C145—C144 | 108.8 (4) | C65'—C66'—H66' | 120.0 |
N141—C145—H145 | 125.6 | C61'—C66'—H66' | 120.0 |
C144—C145—H145 | 125.6 | ||
N121—B1—N101—C105 | −127.5 (4) | C152—C143—C144—C145 | −177.3 (4) |
N141—B1—N101—C105 | 112.0 (5) | N142—N141—C145—C144 | 0.4 (5) |
N121—B1—N101—N102 | 67.6 (4) | B1—N141—C145—C144 | 173.4 (5) |
N141—B1—N101—N102 | −52.9 (5) | C143—C144—C145—N141 | −0.4 (5) |
C105—N101—N102—C103 | −0.6 (4) | O55—Pr1—N151—C156 | 77.7 (11) |
B1—N101—N102—C103 | 167.4 (4) | O25—Pr1—N151—C156 | −48.1 (3) |
C105—N101—N102—Pr1 | 176.6 (3) | O51—Pr1—N151—C156 | 10.8 (3) |
B1—N101—N102—Pr1 | −15.4 (5) | O55'—Pr1—N151—C156 | 70.1 (11) |
O55—Pr1—N102—C103 | 73.7 (4) | O21—Pr1—N151—C156 | −116.7 (3) |
O25—Pr1—N102—C103 | −76.5 (5) | N122—Pr1—N151—C156 | −160.3 (2) |
O51—Pr1—N102—C103 | 23.0 (3) | N142—Pr1—N151—C156 | 177.7 (3) |
O55'—Pr1—N102—C103 | 63.9 (5) | N131—Pr1—N151—C156 | −71.8 (3) |
O21—Pr1—N102—C103 | −161.7 (3) | N102—Pr1—N151—C156 | 130.6 (3) |
N122—Pr1—N102—C103 | 149.9 (3) | N111—Pr1—N151—C156 | 76.4 (3) |
N142—Pr1—N102—C103 | −127.3 (3) | O55—Pr1—N151—C152 | −115.8 (11) |
N131—Pr1—N102—C103 | 118.0 (3) | O25—Pr1—N151—C152 | 118.4 (3) |
N151—Pr1—N102—C103 | −80.6 (3) | O51—Pr1—N151—C152 | 177.3 (2) |
N111—Pr1—N102—C103 | −12.2 (3) | O55'—Pr1—N151—C152 | −123.3 (10) |
O55—Pr1—N102—N101 | −103.1 (4) | O21—Pr1—N151—C152 | 49.9 (2) |
O25—Pr1—N102—N101 | 106.7 (4) | N122—Pr1—N151—C152 | 6.2 (3) |
O51—Pr1—N102—N101 | −153.8 (3) | N142—Pr1—N151—C152 | −15.7 (2) |
O55'—Pr1—N102—N101 | −112.9 (5) | N131—Pr1—N151—C152 | 94.7 (3) |
O21—Pr1—N102—N101 | 21.5 (3) | N102—Pr1—N151—C152 | −62.8 (3) |
N122—Pr1—N102—N101 | −26.9 (3) | N111—Pr1—N151—C152 | −117.1 (3) |
N142—Pr1—N102—N101 | 55.9 (3) | C156—N151—C152—C153 | 0.1 (5) |
N131—Pr1—N102—N101 | −58.8 (3) | Pr1—N151—C152—C153 | −166.7 (3) |
N151—Pr1—N102—N101 | 102.7 (3) | C156—N151—C152—C143 | −179.8 (3) |
N111—Pr1—N102—N101 | 171.1 (3) | Pr1—N151—C152—C143 | 13.4 (4) |
N101—N102—C103—C104 | 1.2 (4) | N142—C143—C152—N151 | 3.3 (5) |
Pr1—N102—C103—C104 | −176.1 (2) | C144—C143—C152—N151 | −179.3 (4) |
N101—N102—C103—C112 | −172.0 (3) | N142—C143—C152—C153 | −176.6 (3) |
Pr1—N102—C103—C112 | 10.7 (5) | C144—C143—C152—C153 | 0.8 (6) |
N102—C103—C104—C105 | −1.4 (5) | N151—C152—C153—C154 | −1.2 (6) |
C112—C103—C104—C105 | 170.6 (4) | C143—C152—C153—C154 | 178.7 (3) |
C103—C104—C105—N101 | 1.0 (5) | C152—C153—C154—C155 | 0.7 (6) |
N102—N101—C105—C104 | −0.2 (5) | C153—C154—C155—C156 | 0.8 (6) |
B1—N101—C105—C104 | −166.3 (4) | C152—N151—C156—C155 | 1.4 (6) |
O55—Pr1—N111—C116 | 113.7 (6) | Pr1—N151—C156—C155 | 168.4 (3) |
O25—Pr1—N111—C116 | −11.8 (3) | C154—C155—C156—N151 | −1.9 (6) |
O51—Pr1—N111—C116 | 37.5 (3) | C16—C11—C12—C13 | 0.8 (6) |
O55'—Pr1—N111—C116 | 108.8 (7) | C22—C11—C12—C13 | −177.9 (3) |
O21—Pr1—N111—C116 | −95.1 (3) | C11—C12—C13—C14 | 0.1 (6) |
N122—Pr1—N111—C116 | 164.1 (3) | C12—C13—C14—C15 | −0.3 (7) |
N142—Pr1—N111—C116 | −124.3 (3) | C13—C14—C15—C16 | −0.4 (6) |
N131—Pr1—N111—C116 | 79.3 (3) | C14—C15—C16—C11 | 1.3 (6) |
N102—Pr1—N111—C116 | −175.6 (3) | C12—C11—C16—C15 | −1.5 (5) |
N151—Pr1—N111—C116 | −67.0 (3) | C22—C11—C16—C15 | 177.3 (3) |
O55—Pr1—N111—C112 | −57.5 (6) | O55—Pr1—O21—C22 | −119.7 (9) |
O25—Pr1—N111—C112 | 177.1 (3) | O25—Pr1—O21—C22 | 1.2 (3) |
O51—Pr1—N111—C112 | −133.7 (3) | O51—Pr1—O21—C22 | −22.0 (4) |
O55'—Pr1—N111—C112 | −62.3 (7) | O55'—Pr1—O21—C22 | −116.8 (10) |
O21—Pr1—N111—C112 | 93.8 (3) | N122—Pr1—O21—C22 | −146.4 (4) |
N122—Pr1—N111—C112 | −7.1 (3) | N142—Pr1—O21—C22 | 130.3 (4) |
N142—Pr1—N111—C112 | 64.6 (3) | N131—Pr1—O21—C22 | −78.7 (3) |
N131—Pr1—N111—C112 | −91.9 (3) | N102—Pr1—O21—C22 | 163.3 (3) |
N102—Pr1—N111—C112 | 13.2 (3) | N151—Pr1—O21—C22 | 69.5 (3) |
N151—Pr1—N111—C112 | 121.8 (3) | N111—Pr1—O21—C22 | 97.2 (4) |
C116—N111—C112—C113 | −0.4 (6) | Pr1—O21—C22—C23 | −4.7 (6) |
Pr1—N111—C112—C113 | 171.1 (3) | Pr1—O21—C22—C11 | 178.2 (2) |
C116—N111—C112—C103 | 174.4 (3) | C12—C11—C22—O21 | −169.1 (3) |
Pr1—N111—C112—C103 | −14.1 (4) | C16—C11—C22—O21 | 12.1 (5) |
N102—C103—C112—N111 | 2.9 (5) | C12—C11—C22—C23 | 13.6 (5) |
C104—C103—C112—N111 | −168.5 (4) | C16—C11—C22—C23 | −165.1 (3) |
N102—C103—C112—C113 | 177.6 (4) | O21—C22—C23—C24 | 1.7 (5) |
C104—C103—C112—C113 | 6.2 (7) | C11—C22—C23—C24 | 178.6 (3) |
N111—C112—C113—C114 | 1.8 (7) | C22—C23—C24—O25 | 5.7 (5) |
C103—C112—C113—C114 | −172.6 (4) | C22—C23—C24—C31 | −173.6 (3) |
C112—C113—C114—C115 | −0.8 (7) | C23—C24—O25—Pr1 | −12.1 (6) |
C113—C114—C115—C116 | −1.5 (7) | C31—C24—O25—Pr1 | 167.2 (2) |
C112—N111—C116—C115 | −2.2 (6) | O55—Pr1—O25—C24 | 130.4 (5) |
Pr1—N111—C116—C115 | −173.6 (3) | O51—Pr1—O25—C24 | 167.8 (4) |
C114—C115—C116—N111 | 3.1 (6) | O55'—Pr1—O25—C24 | 141.3 (6) |
N101—B1—N121—N122 | −55.3 (5) | O21—Pr1—O25—C24 | 7.7 (3) |
N141—B1—N121—N122 | 62.4 (5) | N122—Pr1—O25—C24 | 42.5 (4) |
N101—B1—N121—C125 | 131.5 (4) | N142—Pr1—O25—C24 | −39.7 (3) |
N141—B1—N121—C125 | −110.8 (5) | N131—Pr1—O25—C24 | 82.5 (3) |
C125—N121—N122—C123 | 0.6 (4) | N102—Pr1—O25—C24 | −84.8 (5) |
B1—N121—N122—C123 | −173.9 (4) | N151—Pr1—O25—C24 | −80.4 (3) |
C125—N121—N122—Pr1 | 165.0 (3) | N111—Pr1—O25—C24 | −141.5 (3) |
B1—N121—N122—Pr1 | −9.6 (5) | O25—C24—C31—C36 | 20.8 (4) |
O55—Pr1—N122—C123 | −86.4 (7) | C23—C24—C31—C36 | −159.8 (3) |
O25—Pr1—N122—C123 | 36.8 (3) | O25—C24—C31—C32 | −156.4 (3) |
O51—Pr1—N122—C123 | −48.0 (3) | C23—C24—C31—C32 | 23.0 (5) |
O55'—Pr1—N122—C123 | −88.5 (7) | C36—C31—C32—C33 | −0.7 (5) |
O21—Pr1—N122—C123 | 71.9 (3) | C24—C31—C32—C33 | 176.5 (3) |
N142—Pr1—N122—C123 | 139.8 (3) | C31—C32—C33—C34 | 0.1 (6) |
N131—Pr1—N122—C123 | −7.3 (2) | C32—C33—C34—C35 | 0.9 (6) |
N102—Pr1—N122—C123 | −157.2 (3) | C33—C34—C35—C36 | −1.4 (7) |
N151—Pr1—N122—C123 | 120.2 (3) | C34—C35—C36—C31 | 0.8 (6) |
N111—Pr1—N122—C123 | −138.7 (3) | C32—C31—C36—C35 | 0.3 (5) |
O55—Pr1—N122—N121 | 111.2 (7) | C24—C31—C36—C35 | −177.1 (3) |
O25—Pr1—N122—N121 | −125.6 (3) | C46—C41—C42—C43 | −2.3 (6) |
O51—Pr1—N122—N121 | 149.7 (3) | C52—C41—C42—C43 | 174.9 (4) |
O55'—Pr1—N122—N121 | 109.1 (7) | C41—C42—C43—C44 | 1.9 (7) |
O21—Pr1—N122—N121 | −90.4 (3) | C42—C43—C44—C45 | 0.7 (6) |
N142—Pr1—N122—N121 | −22.6 (3) | C43—C44—C45—C46 | −2.7 (6) |
N131—Pr1—N122—N121 | −169.7 (3) | C44—C45—C46—C41 | 2.3 (6) |
N102—Pr1—N122—N121 | 40.5 (3) | C42—C41—C46—C45 | 0.2 (6) |
N151—Pr1—N122—N121 | −42.1 (3) | C52—C41—C46—C45 | −177.1 (3) |
N111—Pr1—N122—N121 | 58.9 (3) | O55—Pr1—O51—C52 | −5.8 (6) |
N121—N122—C123—C124 | −1.0 (4) | O25—Pr1—O51—C52 | −155.7 (3) |
Pr1—N122—C123—C124 | −166.8 (3) | O55'—Pr1—O51—C52 | 0.9 (7) |
N121—N122—C123—C132 | 174.8 (3) | O21—Pr1—O51—C52 | −132.5 (3) |
Pr1—N122—C123—C132 | 8.9 (4) | N122—Pr1—O51—C52 | −43.6 (4) |
N122—C123—C124—C125 | 0.9 (5) | N142—Pr1—O51—C52 | 119.2 (3) |
C132—C123—C124—C125 | −174.1 (4) | N131—Pr1—O51—C52 | −79.5 (3) |
C123—C124—C125—N121 | −0.5 (5) | N102—Pr1—O51—C52 | 42.1 (3) |
N122—N121—C125—C124 | −0.1 (5) | N151—Pr1—O51—C52 | 145.5 (3) |
B1—N121—C125—C124 | 173.8 (4) | N111—Pr1—O51—C52 | 73.7 (3) |
O55—Pr1—N131—C136 | −105.9 (5) | Pr1—O51—C52—C53' | −21.7 (7) |
O25—Pr1—N131—C136 | 36.2 (2) | Pr1—O51—C52—C53 | 3.7 (6) |
O51—Pr1—N131—C136 | −31.7 (2) | Pr1—O51—C52—C41 | 173.8 (2) |
O55'—Pr1—N131—C136 | −98.5 (6) | C42—C41—C52—O51 | −147.7 (4) |
O21—Pr1—N131—C136 | 106.3 (3) | C46—C41—C52—O51 | 29.4 (5) |
N122—Pr1—N131—C136 | 178.0 (3) | C42—C41—C52—C53' | 45.9 (6) |
N142—Pr1—N131—C136 | 138.4 (2) | C46—C41—C52—C53' | −136.9 (5) |
N102—Pr1—N131—C136 | −148.0 (2) | C42—C41—C52—C53 | 22.1 (6) |
N151—Pr1—N131—C136 | 58.7 (3) | C46—C41—C52—C53 | −160.7 (5) |
N111—Pr1—N131—C136 | −70.9 (3) | O51—C52—C53—C54 | −1.9 (10) |
O55—Pr1—N131—C132 | 81.6 (5) | C53'—C52—C53—C54 | 112 (2) |
O25—Pr1—N131—C132 | −136.3 (3) | C41—C52—C53—C54 | −171.3 (6) |
O51—Pr1—N131—C132 | 155.8 (3) | C52—C53—C54—O55 | 7.4 (17) |
O55'—Pr1—N131—C132 | 88.9 (6) | C52—C53—C54—C61 | −174.7 (7) |
O21—Pr1—N131—C132 | −66.2 (2) | C53—C54—O55—Pr1 | −14 (3) |
N122—Pr1—N131—C132 | 5.5 (2) | C61—C54—O55—Pr1 | 167.9 (16) |
N142—Pr1—N131—C132 | −34.1 (3) | O25—Pr1—O55—C54 | 46 (2) |
N102—Pr1—N131—C132 | 39.5 (3) | O51—Pr1—O55—C54 | 11 (2) |
N151—Pr1—N131—C132 | −113.8 (2) | O55'—Pr1—O55—C54 | −32 (6) |
N111—Pr1—N131—C132 | 116.6 (3) | O21—Pr1—O55—C54 | 135.5 (18) |
C136—N131—C132—C133 | 1.1 (5) | N122—Pr1—O55—C54 | 161 (2) |
Pr1—N131—C132—C133 | 173.8 (3) | N142—Pr1—O55—C54 | −144 (2) |
C136—N131—C132—C123 | −176.4 (3) | N131—Pr1—O55—C54 | 95 (2) |
Pr1—N131—C132—C123 | −3.7 (4) | N102—Pr1—O55—C54 | −123 (2) |
N122—C123—C132—N131 | −3.2 (5) | N151—Pr1—O55—C54 | −63 (3) |
C124—C123—C132—N131 | 171.4 (4) | N111—Pr1—O55—C54 | −62 (2) |
N122—C123—C132—C133 | 179.3 (3) | O55—C54—C61—C62 | 153.7 (12) |
C124—C123—C132—C133 | −6.0 (6) | C53—C54—C61—C62 | −24.5 (8) |
N131—C132—C133—C134 | −1.5 (6) | O55—C54—C61—C66 | −23.3 (13) |
C123—C132—C133—C134 | 175.8 (4) | C53—C54—C61—C66 | 158.5 (6) |
C132—C133—C134—C135 | 0.1 (6) | C66—C61—C62—C63 | 0.0 |
C133—C134—C135—C136 | 1.7 (6) | C54—C61—C62—C63 | −177.0 (5) |
C132—N131—C136—C135 | 0.8 (5) | C61—C62—C63—C64 | 0.0 |
Pr1—N131—C136—C135 | −171.9 (3) | C62—C63—C64—C65 | 0.0 |
C134—C135—C136—N131 | −2.2 (6) | C63—C64—C65—C66 | 0.0 |
N121—B1—N141—C145 | 117.1 (5) | C64—C65—C66—C61 | 0.0 |
N101—B1—N141—C145 | −123.1 (5) | C62—C61—C66—C65 | 0.0 |
N121—B1—N141—N142 | −70.4 (5) | C54—C61—C66—C65 | 177.0 (5) |
N101—B1—N141—N142 | 49.4 (5) | O51—C52—C53'—C54' | 22.3 (10) |
C145—N141—N142—C143 | −0.2 (4) | C53—C52—C53'—C54' | −58.0 (16) |
B1—N141—N142—C143 | −174.1 (4) | C41—C52—C53'—C54' | −173.2 (6) |
C145—N141—N142—Pr1 | −161.8 (3) | C52—C53'—C54'—O55' | 3.3 (16) |
B1—N141—N142—Pr1 | 24.2 (5) | C52—C53'—C54'—C61' | −175.0 (7) |
O55—Pr1—N142—C143 | 163.3 (5) | C53'—C54'—O55'—Pr1 | −34 (3) |
O25—Pr1—N142—C143 | −25.7 (3) | C61'—C54'—O55'—Pr1 | 144 (2) |
O51—Pr1—N142—C143 | 48.9 (4) | O55—Pr1—O55'—C54' | 163 (11) |
O55'—Pr1—N142—C143 | 153.2 (5) | O25—Pr1—O55'—C54' | 55 (3) |
O21—Pr1—N142—C143 | −74.5 (3) | O51—Pr1—O55'—C54' | 28 (2) |
N122—Pr1—N142—C143 | −144.4 (3) | O21—Pr1—O55'—C54' | 148 (2) |
N131—Pr1—N142—C143 | −108.4 (3) | N122—Pr1—O55'—C54' | 175 (3) |
N102—Pr1—N142—C143 | 140.9 (3) | N142—Pr1—O55'—C54' | −124 (3) |
N151—Pr1—N142—C143 | 18.2 (3) | N131—Pr1—O55'—C54' | 112 (3) |
N111—Pr1—N142—C143 | 90.6 (3) | N102—Pr1—O55'—C54' | −113 (3) |
O55—Pr1—N142—N141 | −37.9 (6) | N151—Pr1—O55'—C54' | −42 (3) |
O25—Pr1—N142—N141 | 133.1 (3) | N111—Pr1—O55'—C54' | −49 (2) |
O51—Pr1—N142—N141 | −152.2 (3) | O55'—C54'—C61'—C62' | −152.3 (12) |
O55'—Pr1—N142—N141 | −47.9 (6) | C53'—C54'—C61'—C62' | 26.0 (9) |
O21—Pr1—N142—N141 | 84.3 (3) | O55'—C54'—C61'—C66' | 29.4 (13) |
N122—Pr1—N142—N141 | 14.5 (3) | C53'—C54'—C61'—C66' | −152.2 (6) |
N131—Pr1—N142—N141 | 50.4 (3) | C66'—C61'—C62'—C63' | 0.0 |
N102—Pr1—N142—N141 | −60.3 (3) | C54'—C61'—C62'—C63' | −178.2 (6) |
N151—Pr1—N142—N141 | 177.0 (3) | C61'—C62'—C63'—C64' | 0.0 |
N111—Pr1—N142—N141 | −110.6 (3) | C62'—C63'—C64'—C65' | 0.0 |
N141—N142—C143—C144 | −0.1 (4) | C63'—C64'—C65'—C66' | 0.0 |
Pr1—N142—C143—C144 | 162.4 (3) | C64'—C65'—C66'—C61' | 0.0 |
N141—N142—C143—C152 | 177.9 (3) | C62'—C61'—C66'—C65' | 0.0 |
Pr1—N142—C143—C152 | −19.6 (4) | C54'—C61'—C66'—C65' | 178.3 (6) |
N142—C143—C144—C145 | 0.3 (5) |
Experimental details
Crystal data | |
Chemical formula | [Pr(C24H19BN9)(C15H11O4)2] |
Mr | 1031.68 |
Crystal system, space group | Triclinic, P1 |
Temperature (K) | 150 |
a, b, c (Å) | 11.6308 (15), 11.9248 (16), 18.569 (2) |
α, β, γ (°) | 96.558 (2), 106.782 (2), 105.669 (2) |
V (Å3) | 2321.9 (5) |
Z | 2 |
Radiation type | Mo Kα |
µ (mm−1) | 1.11 |
Crystal size (mm) | 0.34 × 0.25 × 0.18 |
Data collection | |
Diffractometer | Bruker SMART 1000 CCD area-detector diffractometer |
Absorption correction | Multi-scan (SADABS; Sheldrick, 1996) |
Tmin, Tmax | 0.705, 0.826 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 22669, 8143, 7003 |
Rint | 0.032 |
(sin θ/λ)max (Å−1) | 0.595 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.033, 0.074, 1.05 |
No. of reflections | 8143 |
No. of parameters | 680 |
No. of restraints | 230 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 0.73, −0.72 |
Computer programs: XSCANS (Siemens, 1996), XSCANS, SHELXTL (Bruker, 1997), SHELXS97 (Sheldrick, 1997), SHELXL97 (Sheldrick, 1997), SHELXTL.
Pr1—O55 | 2.448 (17) | Pr1—N142 | 2.656 (3) |
Pr1—O25 | 2.454 (2) | Pr1—N131 | 2.656 (3) |
Pr1—O51 | 2.464 (2) | Pr1—N102 | 2.704 (3) |
Pr1—O55' | 2.492 (17) | Pr1—N151 | 2.754 (3) |
Pr1—O21 | 2.496 (2) | Pr1—N111 | 2.804 (3) |
Pr1—N122 | 2.595 (3) | ||
O55—Pr1—O25 | 128.4 (6) | O55—Pr1—N102 | 65.5 (6) |
O55—Pr1—O51 | 71.7 (5) | O25—Pr1—N102 | 163.61 (8) |
O25—Pr1—O51 | 65.89 (7) | O51—Pr1—N102 | 117.95 (9) |
O55—Pr1—O55' | 9.0 (6) | O55'—Pr1—N102 | 66.0 (7) |
O25—Pr1—O55' | 126.1 (6) | O21—Pr1—N102 | 113.69 (9) |
O51—Pr1—O55' | 65.2 (5) | N122—Pr1—N102 | 68.87 (11) |
O55—Pr1—O21 | 129.8 (4) | N142—Pr1—N102 | 59.51 (9) |
O25—Pr1—O21 | 65.98 (7) | N131—Pr1—N102 | 122.86 (9) |
O51—Pr1—O21 | 128.16 (7) | O55—Pr1—N151 | 150.3 (5) |
O55'—Pr1—O21 | 138.5 (4) | O25—Pr1—N151 | 65.76 (8) |
O55—Pr1—N122 | 69.4 (3) | O51—Pr1—N151 | 98.08 (8) |
O25—Pr1—N122 | 121.82 (9) | O55'—Pr1—N151 | 142.4 (4) |
O51—Pr1—N122 | 131.58 (8) | O21—Pr1—N151 | 78.77 (8) |
O55'—Pr1—N122 | 78.1 (4) | N122—Pr1—N151 | 129.64 (9) |
O21—Pr1—N122 | 65.02 (9) | N142—Pr1—N151 | 58.98 (9) |
O55—Pr1—N142 | 121.4 (6) | N131—Pr1—N151 | 135.59 (9) |
O25—Pr1—N142 | 109.44 (8) | N102—Pr1—N151 | 97.90 (9) |
O51—Pr1—N142 | 154.01 (9) | O55—Pr1—N111 | 74.0 (5) |
O55'—Pr1—N142 | 124.5 (7) | O25—Pr1—N111 | 113.86 (9) |
O21—Pr1—N142 | 63.44 (9) | O51—Pr1—N111 | 68.63 (9) |
N122—Pr1—N142 | 73.55 (9) | O55'—Pr1—N111 | 66.3 (5) |
O55—Pr1—N131 | 71.2 (6) | O21—Pr1—N111 | 151.93 (8) |
O25—Pr1—N131 | 73.08 (8) | N122—Pr1—N111 | 124.18 (10) |
O51—Pr1—N131 | 79.07 (8) | N142—Pr1—N111 | 92.39 (10) |
O55'—Pr1—N131 | 76.8 (6) | N131—Pr1—N111 | 138.32 (9) |
O21—Pr1—N131 | 69.66 (8) | N102—Pr1—N111 | 58.02 (11) |
N122—Pr1—N131 | 61.99 (9) | N151—Pr1—N111 | 76.31 (9) |
N142—Pr1—N131 | 125.31 (9) |
Acknowledgements
The authors thank the EPSRC for financial support (to GMD).
References
Amoroso, A. J., Cargill Thompson, A. M., Jeffery, J. C., Jones, P. L., McCleverty, J. A. & Ward, M. D. (1994). J. Chem. Soc. Chem. Commun. pp. 2751–2752. CrossRef Web of Science Google Scholar
Armaroli, N., Accorsi, G., Barigelletti, F., Couchman, S. M., Fleming, J. S., Harden, N. C., Jeffery, J. C., Mann, K. L. V., McCleverty, J. A., Rees, L. H., Starling, S. R. & Ward, M. D. (1999). Inorg. Chem. 38, 5769–5776. Web of Science CSD CrossRef CAS Google Scholar
Bardwell, D. A., Jeffery, J. C., Jones, P. L., McCleverty, J. A., Psillakis, E., Reeves, Z. & Ward, M. D. (1997). J. Chem. Soc. Dalton Trans. pp. 2079–2086. CSD CrossRef Web of Science Google Scholar
Beeby, A., Burton-Pye, B. P., Faulkner, S., Motson, G. R., Jeffery, J. C., McCleverty, J. A. & Ward, M. D. (2002). J. Chem. Soc. Dalton Trans. pp. 1923–1928. Web of Science CSD CrossRef Google Scholar
Beeby, A., Clarkson, I. M., Dickins, R. S., Faulkner, S., Parker, D., Royle, L., de Sousa, A. S., Gareth Williams, J. A. & Woods, M. (1999). J. Chem. Soc. Perkin Trans. 2, pp. 493–503. CrossRef Google Scholar
Bruker (1997). SHELXTL. Version 5.10. Bruker AXS Inc., Madison, Wisconsin, USA. Google Scholar
Davies, G. M., Aarons, R. J., Motson, G. R., Jeffery, J. C., Adams, H., Faulkner, S. & Ward, M. D. (2004). Dalton Trans. pp. 1136–1144. Web of Science CSD CrossRef PubMed Google Scholar
Jones, P. L., Amoroso, A. J., Jeffery, J. C., McCleverty, J. A., Psillakis, E., Rees, L. H. & Ward, M. D. (1997). Inorg. Chem. 36, 10–18. CSD CrossRef CAS Web of Science Google Scholar
Kepert, D. L. (1987). Comprehensive Coordination Chemistry, edited by G. Wilkinson, R. D. Gillard & J. A. McCleverty, 1st ed., Vol. 1, pp. 31–107. Oxford: Pergamon Press. Google Scholar
Marques, N., Sella, A. & Takats, J. (2002). Chem. Rev. 102, 2137–2159. Web of Science CrossRef PubMed CAS Google Scholar
Reeves, Z. R., Mann, K. L. V., Jeffery, J. C., McCleverty, J. A., Ward, M. D., Barigelletti, F. & Armaroli, N. (1999). J. Chem. Soc. Dalton Trans. pp. 349–356. Web of Science CSD CrossRef Google Scholar
Sheldrick, G. M. (1996). SADABS. University of Göttingen, Germany. Google Scholar
Sheldrick, G. M. (1997). SHELXS97 and SHELXL97. University of Göttingen, Germany. Google Scholar
Siemens (1996). XSCANS. Version 2.2. Siemens Analytical X-ray Instruments Inc., Madison, Wisconsin, USA. Google Scholar
Tamboura, F. B., Haba, P. M., Gaye, M., Sall, A. S., Barry, A. H. & Jouini, T. (2004). Polyhedron, 23, 1191–1197. Web of Science CSD CrossRef Google Scholar
Trofimenko, S. (1993). Chem. Rev. 93, 943–980. CrossRef CAS Web of Science Google Scholar
Ward, M. D., McCleverty, J. A., Mann, K. L. V., Jeffery, J. C., Motson, G. R. & Hurst, J. (1999). Acta Cryst. C55, 2055–2058. Web of Science CSD CrossRef CAS IUCr Journals Google Scholar
© International Union of Crystallography. Prior permission is not required to reproduce short quotations, tables and figures from this article, provided the original authors and source are cited. For more information, click here.
Since their introduction, poly(pyrazolyl)borate ligands [for a review, see Trofimenko (1993)] have proved extremely popular for the coordination chemistry of lanthanide(III) ions (Marques et al., 2002). This is largely for two reasons. Firstly, their multiple denticity, hard donor set and single negative charge are ideally attractive to the hard lanthanide(III) cations. Secondly, the ease with which substituents can be added at the 3- and 5-positions of the pyrazolyl rings allows fine-tuning of the size of the ligand cavity. We have been interested in both the structural and photophysical properties of such complexes (Amoroso et al., 1994; Bardwell et al., 1997; Jones et al., 1997; Armaroli et al., 1999; Reeves et al., 1999; Beeby et al., 2002), particularly with the ligand (Tp2py), in which the pyrazolyl rings are functionalized with 2-pyridyl substituents, creating a hexadentate podand-type ligand.
We have used dbm (Hdbm is dibenzoylmethane) as a co-ligand, in order to exclude solvent molecules from the coordination sphere of the metal ion, which is essential for optimization of the photophysical properties of lanthanide(III) complexes, and have recently structurally characterized two types of mixed-ligand (Tp2py/dbm) complex with lanthanide(III) ions. In eight-coordinate [Ln(Tp2py)(dbm)2] (Ln is Eu or Tb), one of the three bidentate arms of Tp2py is pendant, such that this ligand is only tetradentate and the metal centre has an N4O4 coordination sphere (Ward et al., 1999; Davies et al., 2004). In contrast, [Nd(Tp2py)2][Nd(dbm)4] contains 12-coordinate [Nd(Tp2py)2]+ cations and eight-coordinate [Nd(dbm)4]− anions, the former with an icosahedral N12 coordination and the latter with unusual O8 cubic geometry (Davies et al., 2004). In this paper, we report a new structural type in this series, the title compound, (I), [Pr(Tp2py)(dbm)2], which is ten-coordinate, with the PrIII ion in an N6O4 environment with all three chelating arms of Tp2py attached to the metal centre.
Complex (I) (Fig. 1) was prepared by reaction of praseodymium(III) chloride hydrate with KTp2py and Hdbm (1:1:2 molar ratio) in aqueous methanol with a few drops of triethylamine added. By comparison with the analogous structures of EuIII and TbIII, the original concept of the ligand design is achieved in this case, with all three arms of the Tp2py molecule chelating to the PrIII ion. The larger ionic radius of PrIII allows the two dbm units to coordinate without displacing one of the arms of the scorpionate, in contrast with the behaviour shown by the smaller ions EuIII and TbIII. This places the metal ion in a ten-coordinate N6O4 coordination environment, with all five chelating units (three pyrazolyl-pyridine units and two dbm ligands) being approximately parallel to one another.
Many ten-donor coordination spheres exist among PrIII complexes, although only two previous examples of N6O4 environments have been reported to date (Jones et al., 1997; Tamboura et al., 2004). The Pr—N and Pr—O bond lengths are unremarkable, with averages of 2.652, 2.738, and 2.469 Å for the Pr—Npz, Pr—Npy and Pr—O bonds, respectively, all of which are understandably longer than those of the EuIII and TbIII analogues.
The coordination geometry of (I) does not obviously match any of the `ideal' arrangments of ten-coordination (Kepert, 1987). The best way of looking at the coordination geometry is down the N122—Pr1 bond (Fig. 2). The other two pyrazole N atoms, N102 and N142, form a pentagon with pyridyl atom N131 and atoms O55 and O21 from each dbm unit. The average edge length and angle for this pentagon are 2.818 Å and 107.6°, respectively, using O55; if O55' is used instead, these figures become 2.871 Å and 106.9°, respectively. These five atoms display an average deviation from their mean plane of 0.095 Å (if O55 is used) or 0.180 Å (if O55' is used). The pentagon is capped with atom N122, while on the other side of the pentagon resides a distorted square described by atoms O25, N151, N111 and O51. This `square' has an average edge of 2.983 Å and an average angle of 89.5° at its corners, but is rather irregular, with the corner angles varying from 75.50 to 102.31°. The mean deviation from the plane of these four atoms is 0.135 Å.
In conclusion, the contrast of this structure with those of the EuIII, TbIII and NdIII analogues with the same stoichiometry is remarkable. The difference between this PrIII structure and the eight-coordinate complexes with TbIII and EuIII can be rationalized on the basis of the larger ionic radius of PrIII. The contrast with the structure of [Nd(Tp2py)2][Nd(dbm)4] is less easy to explain. It is possible that there is an equilibrium mixture of structural types in solution which is perturbed in one direction or another by crystallization. We examined several crystals of (I) and found them all to have the same unit cell.