organic compounds
1,4-Phenylene-bis-(3,4-dichloro-5-phenylcarbamoyl-1H-pyrrole-2-carboxamide) bis(tetrabutylammonium chloride) acetonitrile disolvate
aSchool of Chemistry, University of Southampton, Highfield, Southampton, England SO17 1BJ
*Correspondence e-mail: light@soton.ac.uk
The title compound, C30H20N6O4Cl4.2C16H36N+·2Cl−·2C2H3N, contains two hydrogen-bonded chloride anions bound to 1,4-phenylene-bis-(3,4-dichloro-5-phenylcarbamoyl-1H-pyrrole-2-carboxamide) as the tetrabutylammonium salt. There is also a short pyrrolic hydrogen bond (N⋯Cl = 3.068 (3) Å), and two longer ones to the amino H atoms [N⋯Cl = 3.269 (3) Å and 3.275 (3) Å]. The neutral molecule lies on an inversion centre situated at the centre of the central benzene ring.
Comment
1,4-Phenylene-bis-(3,4-dichloro-5-phenylcarbamoyl-1H-pyrrole-2-carboxamide) crystallizes from tetrabutylammonium chloride acetonitrile solution as a tetrabutylammonium chloride acetonitrile solvate, (I).
The receptor adopts an S-shaped conformation around a centre of inversion with one chloride bound on each side. The pyrrole and terminal benzene ring pairs are coplanar, and the angle between the central and terminal benzene rings is 32.02 (4)°. Of the three hydrogen bonds to the chloride, the pyrrolic one is the shortest, with an N⋯Cl distance of 3.068 (3) Å, whilst the two either side are longer, with distances of 3.269 (3) Å and 3.275 (3) Å.
Experimental
The receptor molecule, 1,4-phenylene-bis-(3,4-dichloro-5-phenylcarbamoyl-1H-pyrrole-2-carboxamide), (1), was synthesized according to literature methods (Gale et al., 2002). Crystals of the acetonitrile solvate of the tetrabutylammonium chloride complex were grown by slow evaporation of an acetonitrile solution of (1) in acetonitrile in the presence of excess tetrabutylammonium chloride.
Crystal data
|
Data collection
Refinement
|
|
H atoms were identified in a difference map and then placed in calculated positions (N—H 0.88, aromatic C—H 0.95, methylene C—H 0.99, methyl C—H 0.98) and refined using a riding model [Uiso(H) = 1.2 or 1.5 times Ueq(parent atom)]. One arm of the tetrabutylammonium is disordered. It has been modelled as split over two possible orientations with one third and two thirds occupancy. C—C and C—N distances were restrained to standard values and the displacement parameters of split atom pairs were constrained to be equal. The deepest hole is located 1.28 Å from C9.
Data collection: DENZO (Otwinowski & Minor, 1997) and COLLECT (Hooft, 1998); cell DENZO and COLLECT; data reduction: DENZO and COLLECT; program(s) used to solve structure: SHELXS97 (Sheldrick, 1990); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: CAMERON (Watkin et al., 1993); software used to prepare material for publication: WinGX (Farrugia, 1999).
Supporting information
https://doi.org/10.1107/S1600536805010688/ac6167sup1.cif
contains datablocks I, 02sot127. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S1600536805010688/ac6167Isup2.hkl
Data collection: DENZO (Otwinowski and Minor, 1997) and COLLECT (Hooft, 1998); cell
DENZO and COLLECT; data reduction: DENZO and COLLECT; program(s) used to solve structure: SHELXS97 (Sheldrick, 1990); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: CAMERON (Watkin, et al., 1993); software used to prepare material for publication: WinGX (Farrugia, 1998).C30H20N6O4Cl4·2C16H36N+·2Cl−·2C2H3N | F(000) = 1396 |
Mr = 1308.24 | Dx = 1.243 Mg m−3 |
Monoclinic, P21/c | Mo Kα radiation, λ = 0.71073 Å |
a = 8.5720 (2) Å | Cell parameters from 35384 reflections |
b = 21.1088 (5) Å | θ = 2.9–26.4° |
c = 19.3520 (6) Å | µ = 0.30 mm−1 |
β = 93.556 (1)° | T = 120 K |
V = 3494.90 (16) Å3 | Needle, colourless |
Z = 2 | 0.15 × 0.07 × 0.05 mm |
Bruker-Nonius KappaCCD area-detector diffractometer | 7107 independent reflections |
Radiation source: Rotating Anode, Bruker Nonius FR591 | 4902 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.046 |
Detector resolution: 9.091 pixels mm-1 | θmax = 26.4°, θmin = 3.1° |
φ and ω scans to fill the asymmetric unit | h = −10→10 |
Absorption correction: multi-scan (SORTAV; Blessing, 1997) | k = −26→25 |
Tmin = 0.906, Tmax = 0.990 | l = −24→24 |
13653 measured reflections |
Refinement on F2 | Secondary atom site location: difference Fourier map |
Least-squares matrix: full | Hydrogen site location: inferred from neighbouring sites |
R[F2 > 2σ(F2)] = 0.060 | H-atom parameters constrained |
wR(F2) = 0.144 | w = 1/[σ2(Fo2) + (0.0389P)2 + 4.3109P] where P = (Fo2 + 2Fc2)/3 |
S = 1.11 | (Δ/σ)max = 0.001 |
7107 reflections | Δρmax = 0.70 e Å−3 |
395 parameters | Δρmin = −1.05 e Å−3 |
71 restraints | Extinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
Primary atom site location: structure-invariant direct methods | Extinction coefficient: 0.0023 (4) |
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) | |
Cl1 | 0.16835 (9) | 0.70673 (4) | 0.60764 (4) | 0.0322 (2) | |
Cl2 | 0.38459 (10) | 0.57889 (4) | 0.64814 (4) | 0.0336 (2) | |
Cl3 | 0.18791 (9) | 0.69400 (4) | 0.95662 (4) | 0.0282 (2) | |
N1 | 0.0570 (3) | 0.78167 (12) | 0.82639 (13) | 0.0269 (6) | |
H91 | 0.1008 | 0.7571 | 0.8588 | 0.032* | |
N2 | 0.2000 (3) | 0.66144 (12) | 0.80256 (13) | 0.0253 (6) | |
H92 | 0.1828 | 0.6667 | 0.8465 | 0.030* | |
N3 | 0.3598 (3) | 0.57156 (13) | 0.89035 (13) | 0.0299 (6) | |
H93 | 0.3070 | 0.6047 | 0.9037 | 0.036* | |
O1 | −0.0100 (3) | 0.78668 (13) | 0.71095 (13) | 0.0488 (7) | |
O2 | 0.4268 (3) | 0.51780 (11) | 0.79409 (12) | 0.0354 (6) | |
C1 | −0.1002 (4) | 0.87948 (16) | 0.80754 (19) | 0.0338 (8) | |
H1 | −0.1308 | 0.8677 | 0.7613 | 0.041* | |
C2 | −0.1505 (4) | 0.93640 (17) | 0.8346 (2) | 0.0385 (9) | |
H2 | −0.2162 | 0.9635 | 0.8064 | 0.046* | |
C3 | −0.1069 (4) | 0.95440 (17) | 0.90160 (19) | 0.0386 (9) | |
H3 | −0.1404 | 0.9938 | 0.9191 | 0.046* | |
C4 | −0.0142 (4) | 0.91450 (18) | 0.94291 (19) | 0.0398 (9) | |
H4 | 0.0150 | 0.9263 | 0.9893 | 0.048* | |
C5 | 0.0367 (4) | 0.85722 (16) | 0.91719 (18) | 0.0326 (8) | |
H5 | 0.0999 | 0.8298 | 0.9460 | 0.039* | |
C6 | −0.0048 (3) | 0.84006 (15) | 0.84902 (17) | 0.0268 (7) | |
C7 | 0.0562 (4) | 0.75944 (16) | 0.76053 (17) | 0.0291 (7) | |
C8 | 0.1449 (3) | 0.70049 (15) | 0.75015 (16) | 0.0259 (7) | |
C9 | 0.1974 (3) | 0.67619 (15) | 0.68946 (16) | 0.0251 (7) | |
C10 | 0.2860 (3) | 0.62214 (15) | 0.70655 (16) | 0.0248 (7) | |
C11 | 0.2856 (3) | 0.61305 (15) | 0.77710 (16) | 0.0249 (7) | |
C12 | 0.3633 (4) | 0.56283 (15) | 0.82090 (16) | 0.0268 (7) | |
C13 | 0.3841 (4) | 0.54326 (15) | 1.01052 (17) | 0.0287 (7) | |
H13 | 0.3042 | 0.5733 | 1.0178 | 0.034* | |
C14 | 0.4311 (4) | 0.53353 (14) | 0.94363 (16) | 0.0254 (7) | |
C15 | 0.5488 (4) | 0.48980 (15) | 0.93349 (17) | 0.0276 (7) | |
H15 | 0.5830 | 0.4827 | 0.8884 | 0.033* | |
N4 | 0.6730 (3) | 0.78866 (15) | 0.53584 (13) | 0.0369 (7) | |
C16 | 0.6876 (4) | 0.71763 (18) | 0.53514 (19) | 0.0428 (10) | |
H16A | 0.7130 | 0.7029 | 0.5831 | 0.051* | |
H16B | 0.7763 | 0.7061 | 0.5073 | 0.051* | |
C17 | 0.5423 (4) | 0.68249 (18) | 0.5063 (2) | 0.0448 (10) | |
H17A | 0.4625 | 0.6827 | 0.5411 | 0.054* | |
H17B | 0.4981 | 0.7047 | 0.4645 | 0.054* | |
C18 | 0.5802 (5) | 0.6145 (2) | 0.4878 (2) | 0.0587 (12) | |
H18A | 0.6625 | 0.6145 | 0.4541 | 0.070* | |
H18B | 0.6223 | 0.5923 | 0.5300 | 0.070* | |
C19 | 0.4393 (5) | 0.5784 (2) | 0.4572 (2) | 0.0608 (12) | |
H19A | 0.3608 | 0.5750 | 0.4918 | 0.091* | |
H19B | 0.4716 | 0.5359 | 0.4437 | 0.091* | |
H19C | 0.3945 | 0.6010 | 0.4164 | 0.091* | |
C20A | 0.630 (3) | 0.8185 (17) | 0.4688 (7) | 0.0422 (16) | 0.33 |
H20A | 0.6117 | 0.8639 | 0.4779 | 0.051* | 0.33 |
H20B | 0.5279 | 0.8003 | 0.4521 | 0.051* | 0.33 |
C21A | 0.7378 (10) | 0.8148 (5) | 0.4082 (4) | 0.0301 (12) | 0.33 |
H21A | 0.8400 | 0.8342 | 0.4224 | 0.036* | 0.33 |
H21B | 0.7561 | 0.7699 | 0.3966 | 0.036* | 0.33 |
C22A | 0.6656 (11) | 0.8494 (5) | 0.3439 (3) | 0.0382 (13) | 0.33 |
H22A | 0.5558 | 0.8356 | 0.3349 | 0.046* | 0.33 |
H22B | 0.6654 | 0.8956 | 0.3528 | 0.046* | 0.33 |
C23A | 0.7577 (14) | 0.8357 (6) | 0.2797 (4) | 0.0549 (15) | 0.33 |
H23A | 0.8626 | 0.8540 | 0.2863 | 0.082* | 0.33 |
H23B | 0.7031 | 0.8546 | 0.2387 | 0.082* | 0.33 |
H23C | 0.7659 | 0.7898 | 0.2733 | 0.082* | 0.33 |
C20B | 0.6322 (15) | 0.8116 (7) | 0.4628 (3) | 0.0422 (16) | 0.67 |
H20C | 0.6492 | 0.8580 | 0.4613 | 0.051* | 0.67 |
H20D | 0.5196 | 0.8038 | 0.4516 | 0.051* | 0.67 |
C21B | 0.7262 (6) | 0.7803 (2) | 0.4067 (2) | 0.0301 (12) | 0.67 |
H21C | 0.8386 | 0.7803 | 0.4219 | 0.036* | 0.67 |
H21D | 0.6922 | 0.7357 | 0.4004 | 0.036* | 0.67 |
C22B | 0.7025 (6) | 0.8158 (2) | 0.33735 (16) | 0.0382 (13) | 0.67 |
H22C | 0.7477 | 0.7906 | 0.3004 | 0.046* | 0.67 |
H22D | 0.5893 | 0.8209 | 0.3253 | 0.046* | 0.67 |
C23B | 0.7807 (7) | 0.8815 (2) | 0.3413 (3) | 0.0549 (15) | 0.67 |
H23D | 0.7279 | 0.9082 | 0.3741 | 0.082* | 0.67 |
H23E | 0.7729 | 0.9012 | 0.2954 | 0.082* | 0.67 |
H23F | 0.8910 | 0.8768 | 0.3570 | 0.082* | 0.67 |
C24 | 0.8284 (4) | 0.81522 (18) | 0.56291 (18) | 0.0407 (9) | |
H24A | 0.9060 | 0.8069 | 0.5282 | 0.049* | |
H24B | 0.8627 | 0.7919 | 0.6055 | 0.049* | |
C25 | 0.8304 (4) | 0.8857 (2) | 0.5793 (2) | 0.0481 (11) | |
H25A | 0.7668 | 0.8938 | 0.6194 | 0.058* | |
H25B | 0.7831 | 0.9094 | 0.5391 | 0.058* | |
C26 | 0.9971 (4) | 0.9094 (2) | 0.5959 (2) | 0.0523 (11) | |
H26A | 1.0439 | 0.8854 | 0.6360 | 0.063* | |
H26B | 1.0603 | 0.9008 | 0.5559 | 0.063* | |
C27 | 1.0042 (5) | 0.9796 (2) | 0.6125 (3) | 0.0670 (14) | |
H27A | 0.9553 | 1.0036 | 0.5736 | 0.101* | |
H27B | 1.1136 | 0.9927 | 0.6203 | 0.101* | |
H27C | 0.9484 | 0.9879 | 0.6542 | 0.101* | |
C28 | 0.5439 (4) | 0.80920 (18) | 0.58037 (17) | 0.0355 (8) | |
H28A | 0.4446 | 0.7908 | 0.5607 | 0.043* | |
H28B | 0.5342 | 0.8559 | 0.5771 | 0.043* | |
C29 | 0.5623 (4) | 0.79135 (17) | 0.65683 (17) | 0.0345 (8) | |
H29A | 0.6707 | 0.8000 | 0.6751 | 0.041* | |
H29B | 0.5414 | 0.7456 | 0.6624 | 0.041* | |
C30 | 0.4476 (4) | 0.83005 (18) | 0.69701 (18) | 0.0394 (9) | |
H30A | 0.4691 | 0.8757 | 0.6906 | 0.047* | |
H30B | 0.3399 | 0.8216 | 0.6778 | 0.047* | |
C31 | 0.4579 (5) | 0.8149 (2) | 0.77423 (19) | 0.0489 (10) | |
H31A | 0.4398 | 0.7695 | 0.7809 | 0.073* | |
H31B | 0.3786 | 0.8392 | 0.7971 | 0.073* | |
H31C | 0.5620 | 0.8261 | 0.7943 | 0.073* | |
N5 | 0.1513 (5) | 0.4085 (2) | 0.3604 (2) | 0.0760 (8) | |
C32 | 0.1877 (6) | 0.4529 (3) | 0.3326 (3) | 0.0760 (8) | |
C33 | 0.2353 (6) | 0.5087 (3) | 0.2980 (3) | 0.0760 (8) | |
H33A | 0.2260 | 0.5454 | 0.3285 | 0.114* | |
H33B | 0.1684 | 0.5149 | 0.2556 | 0.114* | |
H33C | 0.3442 | 0.5042 | 0.2861 | 0.114* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Cl1 | 0.0372 (4) | 0.0405 (5) | 0.0186 (4) | 0.0071 (3) | 0.0002 (3) | 0.0055 (3) |
Cl2 | 0.0420 (5) | 0.0354 (5) | 0.0238 (4) | 0.0068 (4) | 0.0060 (3) | 0.0001 (4) |
Cl3 | 0.0298 (4) | 0.0346 (5) | 0.0200 (4) | 0.0070 (3) | −0.0008 (3) | 0.0006 (3) |
N1 | 0.0307 (14) | 0.0291 (15) | 0.0204 (15) | 0.0052 (11) | −0.0017 (11) | 0.0040 (11) |
N2 | 0.0288 (14) | 0.0290 (15) | 0.0177 (14) | 0.0060 (11) | −0.0010 (10) | 0.0017 (11) |
N3 | 0.0402 (16) | 0.0271 (15) | 0.0225 (15) | 0.0138 (12) | 0.0019 (11) | 0.0038 (12) |
O1 | 0.0698 (18) | 0.0513 (17) | 0.0244 (14) | 0.0326 (14) | −0.0060 (12) | 0.0028 (12) |
O2 | 0.0508 (15) | 0.0314 (14) | 0.0236 (13) | 0.0146 (11) | 0.0002 (10) | −0.0012 (10) |
C1 | 0.0354 (19) | 0.035 (2) | 0.031 (2) | 0.0050 (15) | 0.0032 (14) | 0.0037 (16) |
C2 | 0.040 (2) | 0.033 (2) | 0.043 (2) | 0.0071 (15) | 0.0041 (16) | 0.0038 (17) |
C3 | 0.040 (2) | 0.032 (2) | 0.044 (2) | 0.0012 (16) | 0.0071 (16) | −0.0070 (17) |
C4 | 0.041 (2) | 0.044 (2) | 0.034 (2) | −0.0001 (17) | −0.0039 (16) | −0.0102 (17) |
C5 | 0.0302 (18) | 0.035 (2) | 0.032 (2) | 0.0011 (14) | −0.0031 (14) | −0.0003 (15) |
C6 | 0.0255 (16) | 0.0262 (17) | 0.0287 (18) | −0.0005 (13) | 0.0029 (13) | 0.0001 (14) |
C7 | 0.0286 (17) | 0.0354 (19) | 0.0233 (18) | 0.0080 (14) | 0.0003 (13) | 0.0060 (15) |
C8 | 0.0265 (16) | 0.0316 (18) | 0.0190 (17) | 0.0040 (13) | −0.0029 (12) | 0.0038 (13) |
C9 | 0.0278 (16) | 0.0277 (18) | 0.0193 (17) | 0.0001 (13) | −0.0012 (12) | 0.0037 (13) |
C10 | 0.0242 (16) | 0.0280 (18) | 0.0223 (17) | −0.0017 (13) | 0.0008 (12) | −0.0010 (13) |
C11 | 0.0266 (16) | 0.0265 (17) | 0.0211 (17) | 0.0016 (13) | −0.0014 (12) | 0.0009 (13) |
C12 | 0.0292 (17) | 0.0295 (18) | 0.0214 (18) | 0.0030 (13) | 0.0003 (13) | 0.0029 (14) |
C13 | 0.0343 (18) | 0.0258 (18) | 0.0264 (18) | 0.0104 (13) | 0.0048 (13) | 0.0019 (14) |
C14 | 0.0319 (17) | 0.0219 (17) | 0.0222 (17) | 0.0040 (13) | 0.0001 (13) | 0.0041 (13) |
C15 | 0.0353 (18) | 0.0259 (18) | 0.0221 (17) | 0.0049 (13) | 0.0050 (13) | 0.0006 (14) |
N4 | 0.0233 (14) | 0.065 (2) | 0.0223 (15) | 0.0097 (13) | 0.0012 (11) | 0.0114 (14) |
C16 | 0.037 (2) | 0.063 (3) | 0.029 (2) | 0.0218 (18) | 0.0035 (15) | 0.0039 (18) |
C17 | 0.033 (2) | 0.064 (3) | 0.037 (2) | 0.0110 (18) | 0.0034 (16) | 0.0024 (19) |
C18 | 0.053 (3) | 0.074 (3) | 0.050 (3) | 0.022 (2) | 0.007 (2) | −0.009 (2) |
C19 | 0.064 (3) | 0.071 (3) | 0.046 (3) | 0.008 (2) | −0.007 (2) | −0.005 (2) |
C20A | 0.0237 (18) | 0.084 (4) | 0.019 (2) | 0.005 (2) | 0.0002 (16) | 0.016 (3) |
C21A | 0.026 (2) | 0.039 (4) | 0.026 (2) | −0.004 (3) | 0.0019 (16) | 0.007 (3) |
C22A | 0.043 (3) | 0.047 (4) | 0.025 (2) | 0.007 (3) | 0.004 (2) | 0.004 (3) |
C23A | 0.064 (4) | 0.048 (3) | 0.055 (4) | 0.007 (3) | 0.028 (3) | 0.015 (3) |
C20B | 0.0237 (18) | 0.084 (4) | 0.019 (2) | 0.005 (2) | 0.0002 (16) | 0.016 (3) |
C21B | 0.026 (2) | 0.039 (4) | 0.026 (2) | −0.004 (3) | 0.0019 (16) | 0.007 (3) |
C22B | 0.043 (3) | 0.047 (4) | 0.025 (2) | 0.007 (3) | 0.004 (2) | 0.004 (3) |
C23B | 0.064 (4) | 0.048 (3) | 0.055 (4) | 0.007 (3) | 0.028 (3) | 0.015 (3) |
C24 | 0.0272 (18) | 0.069 (3) | 0.0257 (19) | 0.0113 (17) | 0.0005 (14) | 0.0096 (18) |
C25 | 0.0283 (19) | 0.081 (3) | 0.035 (2) | 0.0079 (19) | −0.0012 (15) | 0.010 (2) |
C26 | 0.034 (2) | 0.078 (3) | 0.046 (3) | 0.005 (2) | 0.0065 (17) | 0.005 (2) |
C27 | 0.043 (3) | 0.095 (4) | 0.063 (3) | −0.002 (2) | 0.003 (2) | −0.006 (3) |
C28 | 0.0253 (17) | 0.050 (2) | 0.032 (2) | 0.0070 (15) | 0.0060 (14) | 0.0088 (17) |
C29 | 0.0330 (18) | 0.041 (2) | 0.030 (2) | 0.0041 (15) | 0.0050 (14) | 0.0069 (16) |
C30 | 0.041 (2) | 0.043 (2) | 0.036 (2) | −0.0016 (16) | 0.0100 (16) | −0.0028 (17) |
C31 | 0.045 (2) | 0.066 (3) | 0.037 (2) | −0.011 (2) | 0.0103 (17) | −0.008 (2) |
N5 | 0.0679 (17) | 0.079 (2) | 0.079 (2) | 0.0018 (16) | −0.0066 (14) | 0.0135 (16) |
C32 | 0.0679 (17) | 0.079 (2) | 0.079 (2) | 0.0018 (16) | −0.0066 (14) | 0.0135 (16) |
C33 | 0.0679 (17) | 0.079 (2) | 0.079 (2) | 0.0018 (16) | −0.0066 (14) | 0.0135 (16) |
Cl1—C9 | 1.713 (3) | C4—H4 | 0.9500 |
Cl2—C10 | 1.716 (3) | C5—H5 | 0.9500 |
N1—C7 | 1.358 (4) | C13—H13 | 0.9500 |
N1—C6 | 1.421 (4) | C15—H15 | 0.9500 |
N2—C11 | 1.367 (4) | C16—H16A | 0.9900 |
N2—C8 | 1.368 (4) | C16—H16B | 0.9900 |
N3—C12 | 1.359 (4) | C17—H17A | 0.9900 |
N3—C14 | 1.416 (4) | C17—H17B | 0.9900 |
O1—C7 | 1.227 (4) | C18—H18A | 0.9900 |
O2—C12 | 1.226 (4) | C18—H18B | 0.9900 |
C1—C6 | 1.387 (4) | C19—H19A | 0.9800 |
C1—C2 | 1.390 (5) | C19—H19B | 0.9800 |
C2—C3 | 1.381 (5) | C19—H19C | 0.9800 |
C3—C4 | 1.379 (5) | C20A—H20A | 0.9900 |
C4—C5 | 1.388 (5) | C20A—H20B | 0.9900 |
C5—C6 | 1.393 (5) | C21A—H21A | 0.9900 |
C7—C8 | 1.478 (4) | C21A—H21B | 0.9900 |
C8—C9 | 1.382 (4) | C22A—H22A | 0.9900 |
C9—C10 | 1.399 (4) | C22A—H22B | 0.9900 |
C10—C11 | 1.379 (4) | C23A—H23A | 0.9800 |
C11—C12 | 1.489 (4) | C23A—H23B | 0.9800 |
C13—C15i | 1.384 (4) | C23A—H23C | 0.9800 |
C13—C14 | 1.395 (4) | C20B—H20C | 0.9900 |
C14—C15 | 1.390 (4) | C20B—H20D | 0.9900 |
C15—C13i | 1.384 (4) | C21B—H21C | 0.9900 |
N4—C20A | 1.469 (8) | C21B—H21D | 0.9900 |
N4—C16 | 1.505 (4) | C22B—H22C | 0.9900 |
N4—C24 | 1.508 (4) | C22B—H22D | 0.9900 |
N4—C28 | 1.508 (4) | C23B—H23D | 0.9800 |
N4—C20B | 1.514 (5) | C23B—H23E | 0.9800 |
C16—C17 | 1.525 (5) | C23B—H23F | 0.9800 |
C17—C18 | 1.519 (5) | C24—H24A | 0.9900 |
C18—C19 | 1.517 (5) | C24—H24B | 0.9900 |
C20A—C21A | 1.5399 (11) | C25—H25A | 0.9900 |
C21A—C22A | 1.5398 (11) | C25—H25B | 0.9900 |
C22A—C23A | 1.5396 (11) | C26—H26A | 0.9900 |
C20B—C21B | 1.5405 (11) | C26—H26B | 0.9900 |
C21B—C22B | 1.5403 (10) | C27—H27A | 0.9800 |
C22B—C23B | 1.5393 (11) | C27—H27B | 0.9800 |
C24—C25 | 1.522 (5) | C27—H27C | 0.9800 |
C25—C26 | 1.529 (5) | C28—H28A | 0.9900 |
C26—C27 | 1.518 (5) | C28—H28B | 0.9900 |
C28—C29 | 1.525 (4) | C29—H29A | 0.9900 |
C29—C30 | 1.528 (5) | C29—H29B | 0.9900 |
C30—C31 | 1.526 (5) | C30—H30A | 0.9900 |
N5—C32 | 1.135 (6) | C30—H30B | 0.9900 |
C32—C33 | 1.427 (7) | C31—H31A | 0.9800 |
N1—H91 | 0.8800 | C31—H31B | 0.9800 |
N2—H92 | 0.8800 | C31—H31C | 0.9800 |
N3—H93 | 0.8800 | C33—H33A | 0.9800 |
C1—H1 | 0.9500 | C33—H33B | 0.9800 |
C2—H2 | 0.9500 | C33—H33C | 0.9800 |
C3—H3 | 0.9500 | ||
C7—N1—C6 | 127.5 (3) | C17—C18—H18B | 109.0 |
C11—N2—C8 | 110.6 (3) | H18A—C18—H18B | 107.8 |
C12—N3—C14 | 127.5 (3) | C18—C19—H19A | 109.5 |
C6—C1—C2 | 119.1 (3) | C18—C19—H19B | 109.5 |
C3—C2—C1 | 121.3 (3) | H19A—C19—H19B | 109.5 |
C2—C3—C4 | 119.3 (3) | C18—C19—H19C | 109.5 |
C3—C4—C5 | 120.5 (3) | H19A—C19—H19C | 109.5 |
C4—C5—C6 | 119.9 (3) | H19B—C19—H19C | 109.5 |
C1—C6—C5 | 119.9 (3) | N4—C20A—H20A | 107.0 |
C1—C6—N1 | 124.0 (3) | C21A—C20A—H20A | 107.0 |
C5—C6—N1 | 116.0 (3) | N4—C20A—H20B | 107.0 |
O1—C7—N1 | 123.2 (3) | C21A—C20A—H20B | 107.0 |
O1—C7—C8 | 120.3 (3) | H20A—C20A—H20B | 106.7 |
N1—C7—C8 | 116.5 (3) | C22A—C21A—H21A | 109.4 |
N2—C8—C9 | 106.9 (3) | C20A—C21A—H21A | 109.4 |
N2—C8—C7 | 124.3 (3) | C22A—C21A—H21B | 109.4 |
C9—C8—C7 | 128.7 (3) | C20A—C21A—H21B | 109.4 |
C8—C9—C10 | 107.6 (3) | H21A—C21A—H21B | 108.0 |
C8—C9—Cl1 | 127.5 (2) | C23A—C22A—H22A | 109.4 |
C10—C9—Cl1 | 124.8 (2) | C21A—C22A—H22A | 109.4 |
C11—C10—C9 | 108.2 (3) | C23A—C22A—H22B | 109.4 |
C11—C10—Cl2 | 127.6 (2) | C21A—C22A—H22B | 109.4 |
C9—C10—Cl2 | 124.1 (2) | H22A—C22A—H22B | 108.0 |
N2—C11—C10 | 106.7 (3) | N4—C20B—H20C | 108.6 |
N2—C11—C12 | 123.9 (3) | C21B—C20B—H20C | 108.6 |
C10—C11—C12 | 129.4 (3) | N4—C20B—H20D | 108.6 |
O2—C12—N3 | 124.2 (3) | C21B—C20B—H20D | 108.6 |
O2—C12—C11 | 120.4 (3) | H20C—C20B—H20D | 107.5 |
N3—C12—C11 | 115.4 (3) | C22B—C21B—H21C | 109.4 |
C15i—C13—C14 | 121.5 (3) | C20B—C21B—H21C | 109.4 |
C15—C14—C13 | 118.9 (3) | C22B—C21B—H21D | 109.4 |
C15—C14—N3 | 123.9 (3) | C20B—C21B—H21D | 109.4 |
C13—C14—N3 | 117.1 (3) | H21C—C21B—H21D | 108.0 |
C13i—C15—C14 | 119.6 (3) | C23B—C22B—H22C | 109.4 |
C20A—N4—C16 | 115.8 (15) | C21B—C22B—H22C | 109.4 |
C20A—N4—C24 | 108.5 (15) | C23B—C22B—H22D | 109.4 |
C16—N4—C24 | 107.6 (3) | C21B—C22B—H22D | 109.4 |
C20A—N4—C28 | 103.2 (5) | H22C—C22B—H22D | 108.0 |
C16—N4—C28 | 110.8 (3) | C22B—C23B—H23D | 109.5 |
C24—N4—C28 | 111.0 (3) | C22B—C23B—H23E | 109.5 |
C16—N4—C20B | 109.0 (6) | H23D—C23B—H23E | 109.5 |
C24—N4—C20B | 110.7 (7) | C22B—C23B—H23F | 109.5 |
C28—N4—C20B | 107.8 (3) | H23D—C23B—H23F | 109.5 |
N4—C16—C17 | 115.0 (3) | H23E—C23B—H23F | 109.5 |
C18—C17—C16 | 111.4 (3) | N4—C24—H24A | 108.3 |
C19—C18—C17 | 112.9 (3) | C25—C24—H24A | 108.3 |
N4—C20A—C21A | 121.4 (7) | N4—C24—H24B | 108.3 |
C22A—C21A—C20A | 111.18 (11) | C25—C24—H24B | 108.3 |
C23A—C22A—C21A | 111.22 (11) | H24A—C24—H24B | 107.4 |
N4—C20B—C21B | 114.8 (4) | C24—C25—H25A | 109.4 |
C22B—C21B—C20B | 111.06 (10) | C26—C25—H25A | 109.4 |
C23B—C22B—C21B | 111.19 (10) | C24—C25—H25B | 109.4 |
N4—C24—C25 | 115.8 (3) | C26—C25—H25B | 109.4 |
C24—C25—C26 | 111.2 (3) | H25A—C25—H25B | 108.0 |
C27—C26—C25 | 112.9 (3) | C27—C26—H26A | 109.0 |
N4—C28—C29 | 116.6 (3) | C25—C26—H26A | 109.0 |
C28—C29—C30 | 109.3 (3) | C27—C26—H26B | 109.0 |
C31—C30—C29 | 112.7 (3) | C25—C26—H26B | 109.0 |
N5—C32—C33 | 179.3 (6) | H26A—C26—H26B | 107.8 |
C7—N1—H91 | 116.3 | C26—C27—H27A | 109.5 |
C6—N1—H91 | 116.3 | C26—C27—H27B | 109.5 |
C11—N2—H92 | 124.7 | H27A—C27—H27B | 109.5 |
C8—N2—H92 | 124.7 | C26—C27—H27C | 109.5 |
C12—N3—H93 | 116.3 | H27A—C27—H27C | 109.5 |
C14—N3—H93 | 116.3 | H27B—C27—H27C | 109.5 |
C6—C1—H1 | 120.4 | N4—C28—H28A | 108.1 |
C2—C1—H1 | 120.4 | C29—C28—H28A | 108.1 |
C3—C2—H2 | 119.4 | N4—C28—H28B | 108.1 |
C1—C2—H2 | 119.4 | C29—C28—H28B | 108.1 |
C4—C3—H3 | 120.4 | H28A—C28—H28B | 107.3 |
C2—C3—H3 | 120.4 | C28—C29—H29A | 109.8 |
C3—C4—H4 | 119.8 | C30—C29—H29A | 109.8 |
C5—C4—H4 | 119.8 | C28—C29—H29B | 109.8 |
C4—C5—H5 | 120.0 | C30—C29—H29B | 109.8 |
C6—C5—H5 | 120.0 | H29A—C29—H29B | 108.3 |
C15i—C13—H13 | 119.2 | C31—C30—H30A | 109.0 |
C14—C13—H13 | 119.2 | C29—C30—H30A | 109.0 |
C13i—C15—H15 | 120.2 | C31—C30—H30B | 109.0 |
C14—C15—H15 | 120.2 | C29—C30—H30B | 109.0 |
N4—C16—H16A | 108.5 | H30A—C30—H30B | 107.8 |
C17—C16—H16A | 108.5 | C30—C31—H31A | 109.5 |
N4—C16—H16B | 108.5 | C30—C31—H31B | 109.5 |
C17—C16—H16B | 108.5 | H31A—C31—H31B | 109.5 |
H16A—C16—H16B | 107.5 | C30—C31—H31C | 109.5 |
C18—C17—H17A | 109.4 | H31A—C31—H31C | 109.5 |
C16—C17—H17A | 109.4 | H31B—C31—H31C | 109.5 |
C18—C17—H17B | 109.4 | C32—C33—H33A | 109.5 |
C16—C17—H17B | 109.4 | C32—C33—H33B | 109.5 |
H17A—C17—H17B | 108.0 | H33A—C33—H33B | 109.5 |
C19—C18—H18A | 109.0 | C32—C33—H33C | 109.5 |
C17—C18—H18A | 109.0 | H33A—C33—H33C | 109.5 |
C19—C18—H18B | 109.0 | H33B—C33—H33C | 109.5 |
Symmetry code: (i) −x+1, −y+1, −z+2. |
D—H···A | D—H | H···A | D···A | D—H···A |
N1—H91···Cl3 | 0.88 | 2.40 | 3.269 (3) | 172 |
N2—H92···Cl3 | 0.88 | 2.20 | 3.068 (3) | 167 |
N3—H93···Cl3 | 0.88 | 2.40 | 3.275 (3) | 171 |
Acknowledgements
The authors thank the EPSRC for funding the crystallographic facilities. PAG thanks the Royal Society for a University Research Fellowship and Universities UK for an ORS studentship to KN.
References
Blessing, R. H. (1997). J. Appl. Cryst. 30, 421–426. CrossRef CAS Web of Science IUCr Journals Google Scholar
Farrugia, L. J. (1999). J. Appl. Cryst. 32, 837–838. CrossRef CAS IUCr Journals Google Scholar
Gale, P. A., Navakhun, K., Camiolo, S., Light, M. E. & Hursthouse, M. B., (2002). J. Am. Chem. Soc. 124, 11228–11229. Google Scholar
Hooft, R. (1998). COLLECT. Nonius BV, The Netherlands. Google Scholar
Otwinowski, Z. & Minor, W. (1997). Methods in Enzymology, Vol. 276, Macromolecular Crystallography, Part A, edited by C. W. Carter Jr and R. M. Sweet, pp. 307–326. New York: Academic Press. Google Scholar
Sheldrick, G. M. (1990). Acta Cryst. A46, 467–473. CrossRef CAS Web of Science IUCr Journals Google Scholar
Sheldrick, G. M. (1997). SHELXL97. University of Göttingen, Germany. Google Scholar
Watkin, D. M., Pearce, L. & Prout, C. K. (1993). CAMERON. University of Oxford, England. 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.