metal-organic compounds
[2,2′-Bis(diphenylphosphanyl)-1,1′-binaphthyl-κ2P,P′]chlorido(4-methylphenylsulfonyl-κS)palladium(II) dichloromethane trisolvate monohydrate
aDepartment of Chemistry, University of Rochester, Rochester, NY 14627, USA
*Correspondence e-mail: weix@chem.rochester.edu
In the title compound, [Pd(C7H7O2S)Cl(C44H32P2)]·3CH2Cl2·H2O, the geometry around the metal atom is distorted square planar, with a twist angle between the P—Pd—P and S—Pd—Cl planes of 28.11 (2)°. The two Pd—P bond lengths differ by about 0.04 Å and the biphosphane bite angle is slightly obtuse [92.92 (2)°]. There are three dichloromethane and one water molecule co-crystallized with the palladium molecule, all with atoms in general positions. Alternating water and palladium molecules form four-membered cyclic units through O—H⋯Cl and O—H⋯O hydrogen bonding. One of the dichloromethane solvent molecules is disordered over two positions in a 0.55:0.45 ratio.
Related literature
For the only other structurally characterized complex with a closely related ligand set, see: Li et al. (2003). For the synthesis of the (BINAP)PdCl2, see: Ozawa et al. (1993). For an additional related example with spectroscopic characterization, see: Kashiwabara & Tanaka (2005). For a description of the Cambridge Structural Database, see: Allen (2002).
Experimental
Crystal data
|
Refinement
|
|
Data collection: APEX2 (Bruker, 2007); cell SAINT (Bruker, 2007); data reduction: SAINT; program(s) used to solve structure: SIR97 (Altomare et al., 1999); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXTL.
Supporting information
https://doi.org/10.1107/S1600536811049889/br2184sup1.cif
contains datablocks I, global. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S1600536811049889/br2184Isup2.hkl
1H and 31P{1H} NMR spectra were recorded on a Bruker 400 MHz spectrometer with residual protiated solvent as a reference for 1H NMR (δ = 7.26 ppm) and 85% H3PO4 (δ = 0.00 ppm) as a reference for 31P NMR. Dry solvents were prepared from ACS grade, inhibitor free solvents by passage through activated alumina and molecular sieves in a Vacuum Atmospheres solvent purification system. Water content was routinely measured using Karl-Fisher titration (Metrohm) and was less than 30 ppm in all cases. NMR solvents were purchased from Cambridge Isotope Laboratories and used after vacuum transfer from calcium hydride. PdCl2 (Strem Chemicals), BINAP (Alfa Aesar) and p-toluenesulfinate sodium salt (Aldrich) were purchased commercially and used as received.
Under an inert atmosphere, in a dry bomb flask equipped with a magnetic stir bar, 400 mg (0.5 mmol) of (BINAP)PdCl2 (Ozawa et al., 1993), 178 mg (1.0 mmol) of p-tolSO2Na and 10 mL THF were added and stirred overnight at 333 K. The reaction was stopped when the yellow solution changed color to bright orange. The reaction mixture was filtered through celite. The filtrate was removed under reduced pressure. The bright orange residue obtained was dissolved in a minimum volume of CH2Cl2 and layered with pentane. The supernatant was removed and the bright orange crystals obtained were dried under reduced pressure. Vapor diffusion of pentane into a solution of material dissolved in CH2Cl2 afforded crystals appropriate for X-ray crystal diffraction. The crystals obtained were characterized by 1H, 31P{1H} NMR, IR spectroscopy and X-ray diffraction. 1H NMR (CDCl3, ppm): δ 2.45 (s, 3H), 7.2-8.3 (m, 32 H). 31P NMR (CDCl3, ppm): δ 21.4 (d, J = 45 Hz), 31.6 (d, J = 45 Hz). IR (KBr, νS═O): 1265, 1088 cm-1. The IR data compare well to those of the (PPh3)Pd(SO2Ph)Cl complex (Kashiwabara and Tanaka, 2005).
One of the co-crystallized dichloromethane solvent molecules is modeled as disordered over two positions (55:45). Bond lengths and angles in both orientations of the disordered dichloromethane molecule were restrained to be similar. Atoms CL6 and CL6' were constrained to be isopositional. Anisotropic displacement parameters for spatially close atom pairs were constrained to be equivalent.
The hydrogen atoms of the co-crystallized water molecule were found from the difference Fourier map and refined independently from the oxygen atom with individual isotropic displacement parameters. All other hydrogen atoms were placed geometrically and refined relative to the carbon atoms for position and thermal motion (Uiso[H] = 1.2*Ueq[C(non-methyl)] or 1.5*Ueq[C(methyl)]).
The maximum residual peak of 3.13 e/Å3 in the final difference map, located 0.71 Å from the Pd atom, is likely the result of residual absorption errors or a very minor systematic problem with the data (e.g., unresolved
etc.). The maximum residual peak located away from a metal center is found 0.82 Å from atom CL5, and is likely a very minor occupancy disorder position of the chloride atom. The deepest hole of -1.16 e/Å3, located 0.45 Å from atom CL7', is likely the result of imperfect disorder modeling.We report the synthesis, isolation and structural characterization of the title compound, (BINAP)Pd(SO2-4-methylphenyl)Cl, BINAP = 2,2'-bis(diphenylphosphano)-1,1'-binaphthyl. To date the only other structurally characterized palladium complex with a related ligand set (biphosphane, SO2R, halide) is (dppf)Pd(SO2Me)Cl, dppf = 1,1'-bis(diphenylphosphanyl)ferrocene, synthesized via insertion of SO2 into the Pd–C bond of (dppf)Pd(Me)Cl (Li et al., 2003, CSD refcode WUYJUV (Allen, 2002)). The distorted square planar geometry around the metal center is typical for 16-electron palladium complexes, with the cis angles ranging from 88.60 (2) to 93.84 (2)° and with a twist angle between the P–Pd–P and S–Pd–Cl planes of 28.11 (2)°. The biphosphane bite angle is 92.92 (2)°. While the Pd–S and Pd–Cl bond lengths in the title compound are similar to those in (dppf)Pd(SO2Me)Cl, the individual and average Pd–P bond lengths are shorter in the title compound than they are in the latter complex: the average Pd–P bond lengths are 2.2782 (9) and 2.3436 (11) Å, respectively (Li et al., 2003).
The
contains one palladium monomer, one water and three dichloromethane solvent molecules, all with atoms in general positions (Fig. 1). One dichloromethane molecule is modeled as disordered over two positions (55:45). Larger units are formed via hydrogen bonding among two palladium and two water molecules (Fig. 2).For the only other structurally characterized complex with a closely related ligand set, see: Li et al. (2003). For the synthesis of the
(BINAP)PdCl2, see: Ozawa et al. (1993). For an additional related example with spectroscopic characterization, see: Kashiwabara & Tanaka (2005). For a description of the Cambridge Structural Database, see: Allen (2002).Data collection: APEX2 (Bruker, 2007); cell
SAINT (Bruker, 2007); data reduction: SAINT (Bruker, 2007); program(s) used to solve structure: SIR97 (Altomare et al., 1999); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXTL (Sheldrick, 2008).[Pd(C7H7O2S)Cl(C44H32P2)]·3CH2Cl2·H2O | Z = 2 |
Mr = 1192.47 | F(000) = 1212 |
Triclinic, P1 | Dx = 1.552 Mg m−3 |
Hall symbol: -P 1 | Mo Kα radiation, λ = 0.71073 Å |
a = 12.7273 (12) Å | Cell parameters from 9765 reflections |
b = 13.7474 (13) Å | θ = 2.3–38.0° |
c = 16.533 (3) Å | µ = 0.88 mm−1 |
α = 101.808 (2)° | T = 100 K |
β = 101.339 (2)° | Plate, orange |
γ = 109.743 (2)° | 0.34 × 0.18 × 0.06 mm |
V = 2551.8 (5) Å3 |
Bruker SMART APEXII CCD diffractometer | 22145 independent reflections |
Radiation source: fine-focus sealed tube | 15533 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.051 |
area detector, ω scans at different φ | θmax = 35.0°, θmin = 1.7° |
Absorption correction: multi-scan (SADABS; Sheldrick, 2007) | h = −20→20 |
Tmin = 0.754, Tmax = 0.949 | k = −22→22 |
55527 measured reflections | l = −26→26 |
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)] = 0.051 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.128 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.03 | w = 1/[σ2(Fo2) + (0.059P)2 + 0.5385P] where P = (Fo2 + 2Fc2)/3 |
22145 reflections | (Δ/σ)max = 0.001 |
629 parameters | Δρmax = 3.12 e Å−3 |
3 restraints | Δρmin = −1.19 e Å−3 |
[Pd(C7H7O2S)Cl(C44H32P2)]·3CH2Cl2·H2O | γ = 109.743 (2)° |
Mr = 1192.47 | V = 2551.8 (5) Å3 |
Triclinic, P1 | Z = 2 |
a = 12.7273 (12) Å | Mo Kα radiation |
b = 13.7474 (13) Å | µ = 0.88 mm−1 |
c = 16.533 (3) Å | T = 100 K |
α = 101.808 (2)° | 0.34 × 0.18 × 0.06 mm |
β = 101.339 (2)° |
Bruker SMART APEXII CCD diffractometer | 22145 independent reflections |
Absorption correction: multi-scan (SADABS; Sheldrick, 2007) | 15533 reflections with I > 2σ(I) |
Tmin = 0.754, Tmax = 0.949 | Rint = 0.051 |
55527 measured reflections |
R[F2 > 2σ(F2)] = 0.051 | 3 restraints |
wR(F2) = 0.128 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.03 | Δρmax = 3.12 e Å−3 |
22145 reflections | Δρmin = −1.19 e Å−3 |
629 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) | |
Pd1 | 0.984460 (14) | 0.254567 (14) | 0.170687 (11) | 0.01342 (4) | |
Cl1 | 1.16871 (5) | 0.24732 (5) | 0.22063 (4) | 0.01911 (10) | |
P1 | 0.99218 (5) | 0.32202 (5) | 0.31194 (4) | 0.01322 (10) | |
P2 | 0.78889 (5) | 0.19958 (5) | 0.12437 (4) | 0.01378 (10) | |
S1 | 1.00768 (5) | 0.25072 (5) | 0.03371 (4) | 0.01730 (10) | |
O1 | 1.04773 (16) | 0.16952 (15) | −0.00573 (12) | 0.0245 (4) | |
O2 | 0.91331 (16) | 0.26402 (16) | −0.02318 (12) | 0.0240 (4) | |
C1 | 1.13412 (19) | 0.43331 (18) | 0.36018 (15) | 0.0159 (4) | |
C2 | 1.1737 (2) | 0.50283 (19) | 0.31162 (15) | 0.0191 (4) | |
H2 | 1.1249 | 0.4933 | 0.2567 | 0.023* | |
C3 | 1.2834 (2) | 0.5854 (2) | 0.34332 (16) | 0.0215 (5) | |
H3 | 1.3091 | 0.6333 | 0.3106 | 0.026* | |
C4 | 1.3563 (2) | 0.5986 (2) | 0.42264 (17) | 0.0227 (5) | |
H4 | 1.4319 | 0.6549 | 0.4439 | 0.027* | |
C5 | 1.3187 (2) | 0.5296 (2) | 0.47086 (16) | 0.0223 (5) | |
H5 | 1.3688 | 0.5388 | 0.5252 | 0.027* | |
C6 | 1.2077 (2) | 0.4468 (2) | 0.44019 (15) | 0.0186 (4) | |
H6 | 1.1822 | 0.3997 | 0.4735 | 0.022* | |
C7 | 0.97608 (19) | 0.23210 (18) | 0.37843 (15) | 0.0166 (4) | |
C8 | 0.9668 (2) | 0.1269 (2) | 0.34504 (17) | 0.0213 (5) | |
H8 | 0.9759 | 0.1046 | 0.2895 | 0.026* | |
C9 | 0.9441 (2) | 0.0551 (2) | 0.39340 (19) | 0.0275 (5) | |
H9 | 0.9370 | −0.0169 | 0.3705 | 0.033* | |
C10 | 0.9318 (2) | 0.0872 (2) | 0.47488 (19) | 0.0293 (6) | |
H10 | 0.9151 | 0.0371 | 0.5073 | 0.035* | |
C11 | 0.9440 (2) | 0.1926 (2) | 0.50894 (17) | 0.0244 (5) | |
H11 | 0.9377 | 0.2153 | 0.5654 | 0.029* | |
C12 | 0.9653 (2) | 0.2652 (2) | 0.46091 (15) | 0.0194 (4) | |
H12 | 0.9726 | 0.3371 | 0.4841 | 0.023* | |
C13 | 0.72688 (18) | 0.19554 (17) | 0.27927 (14) | 0.0140 (4) | |
C14 | 0.72625 (18) | 0.13534 (17) | 0.20028 (14) | 0.0141 (4) | |
C15 | 0.6869 (2) | 0.02110 (18) | 0.18069 (15) | 0.0174 (4) | |
H15 | 0.6851 | −0.0200 | 0.1263 | 0.021* | |
C16 | 0.6515 (2) | −0.03050 (19) | 0.23889 (16) | 0.0194 (4) | |
H16 | 0.6262 | −0.1069 | 0.2246 | 0.023* | |
C17 | 0.6193 (2) | −0.0251 (2) | 0.38152 (17) | 0.0224 (5) | |
H17 | 0.5958 | −0.1013 | 0.3681 | 0.027* | |
C18 | 0.6212 (2) | 0.0321 (2) | 0.46000 (18) | 0.0251 (5) | |
H18 | 0.6011 | −0.0037 | 0.5016 | 0.030* | |
C19 | 0.6531 (2) | 0.1446 (2) | 0.47905 (17) | 0.0231 (5) | |
H19 | 0.6517 | 0.1840 | 0.5330 | 0.028* | |
C20 | 0.6860 (2) | 0.1982 (2) | 0.42126 (15) | 0.0190 (4) | |
H20 | 0.7082 | 0.2742 | 0.4359 | 0.023* | |
C21 | 0.68735 (19) | 0.14164 (18) | 0.33960 (15) | 0.0162 (4) | |
C22 | 0.65194 (19) | 0.02749 (19) | 0.31962 (16) | 0.0178 (4) | |
C23 | 0.76806 (19) | 0.31632 (17) | 0.30225 (14) | 0.0138 (4) | |
C24 | 0.88568 (19) | 0.38189 (18) | 0.32198 (14) | 0.0145 (4) | |
C25 | 0.9210 (2) | 0.49524 (18) | 0.34099 (14) | 0.0164 (4) | |
H25 | 1.0015 | 0.5399 | 0.3555 | 0.020* | |
C26 | 0.8414 (2) | 0.54170 (18) | 0.33889 (15) | 0.0176 (4) | |
H26 | 0.8671 | 0.6179 | 0.3502 | 0.021* | |
C27 | 0.6375 (2) | 0.5244 (2) | 0.31807 (16) | 0.0212 (5) | |
H27 | 0.6618 | 0.6004 | 0.3284 | 0.025* | |
C28 | 0.5224 (2) | 0.4617 (2) | 0.30143 (16) | 0.0229 (5) | |
H28 | 0.4671 | 0.4941 | 0.3006 | 0.027* | |
C29 | 0.4852 (2) | 0.3491 (2) | 0.28554 (16) | 0.0231 (5) | |
H29 | 0.4048 | 0.3058 | 0.2743 | 0.028* | |
C30 | 0.5637 (2) | 0.30137 (19) | 0.28612 (15) | 0.0185 (4) | |
H30 | 0.5372 | 0.2252 | 0.2749 | 0.022* | |
C31 | 0.68385 (19) | 0.36371 (18) | 0.30311 (14) | 0.0156 (4) | |
C32 | 0.7215 (2) | 0.47790 (18) | 0.32015 (14) | 0.0164 (4) | |
C33 | 0.7248 (2) | 0.29563 (19) | 0.10867 (14) | 0.0168 (4) | |
C34 | 0.7952 (2) | 0.39884 (19) | 0.11076 (16) | 0.0205 (4) | |
H34 | 0.8765 | 0.4183 | 0.1195 | 0.025* | |
C35 | 0.7469 (3) | 0.4740 (2) | 0.10004 (18) | 0.0266 (5) | |
H35 | 0.7950 | 0.5446 | 0.1013 | 0.032* | |
C36 | 0.6281 (3) | 0.4454 (2) | 0.08756 (17) | 0.0276 (6) | |
H36 | 0.5950 | 0.4966 | 0.0802 | 0.033* | |
C37 | 0.5577 (2) | 0.3427 (2) | 0.08568 (16) | 0.0257 (5) | |
H37 | 0.4765 | 0.3239 | 0.0775 | 0.031* | |
C38 | 0.6052 (2) | 0.2670 (2) | 0.09569 (15) | 0.0194 (4) | |
H38 | 0.5566 | 0.1963 | 0.0937 | 0.023* | |
C39 | 0.73753 (19) | 0.09204 (18) | 0.02366 (14) | 0.0163 (4) | |
C40 | 0.7939 (2) | 0.02060 (19) | 0.01685 (16) | 0.0183 (4) | |
H40 | 0.8523 | 0.0262 | 0.0653 | 0.022* | |
C41 | 0.7651 (2) | −0.0581 (2) | −0.06017 (16) | 0.0218 (5) | |
H41 | 0.8032 | −0.1067 | −0.0645 | 0.026* | |
C42 | 0.6804 (2) | −0.0658 (2) | −0.13095 (17) | 0.0241 (5) | |
H42 | 0.6621 | −0.1186 | −0.1843 | 0.029* | |
C43 | 0.6224 (2) | 0.0030 (2) | −0.12437 (16) | 0.0244 (5) | |
H43 | 0.5632 | −0.0040 | −0.1729 | 0.029* | |
C44 | 0.6503 (2) | 0.0826 (2) | −0.04698 (15) | 0.0206 (4) | |
H44 | 0.6103 | 0.1298 | −0.0425 | 0.025* | |
C45 | 1.1288 (2) | 0.37812 (19) | 0.06411 (15) | 0.0185 (4) | |
C46 | 1.2422 (2) | 0.3836 (2) | 0.08485 (16) | 0.0211 (4) | |
H46 | 1.2566 | 0.3195 | 0.0795 | 0.025* | |
C47 | 1.3344 (2) | 0.4843 (2) | 0.11351 (17) | 0.0232 (5) | |
H47 | 1.4123 | 0.4886 | 0.1275 | 0.028* | |
C48 | 1.3142 (2) | 0.5790 (2) | 0.12202 (17) | 0.0250 (5) | |
C49 | 1.1998 (2) | 0.5712 (2) | 0.10011 (17) | 0.0242 (5) | |
H49 | 1.1848 | 0.6350 | 0.1047 | 0.029* | |
C50 | 1.1084 (2) | 0.4721 (2) | 0.07185 (17) | 0.0222 (5) | |
H50 | 1.0306 | 0.4678 | 0.0575 | 0.027* | |
C51 | 1.4146 (3) | 0.6861 (3) | 0.1523 (2) | 0.0404 (7) | |
H51A | 1.4793 | 0.6830 | 0.1937 | 0.061* | |
H51B | 1.3908 | 0.7418 | 0.1803 | 0.061* | |
H51C | 1.4398 | 0.7037 | 0.1029 | 0.061* | |
C52 | 0.8141 (3) | 0.7969 (3) | 0.1659 (2) | 0.0362 (7) | |
H52A | 0.8546 | 0.8762 | 0.1796 | 0.043* | |
H52B | 0.8644 | 0.7630 | 0.1441 | 0.043* | |
Cl2 | 0.68188 (7) | 0.75253 (7) | 0.08601 (5) | 0.03948 (18) | |
Cl3 | 0.79193 (9) | 0.76377 (7) | 0.26067 (6) | 0.0452 (2) | |
C53 | 0.8372 (3) | 0.1678 (3) | 0.7730 (2) | 0.0386 (7) | |
H53A | 0.8389 | 0.1822 | 0.8345 | 0.046* | |
H53B | 0.8603 | 0.1062 | 0.7576 | 0.046* | |
Cl4 | 0.93786 (8) | 0.28336 (8) | 0.75821 (6) | 0.0475 (2) | |
Cl5 | 0.69207 (9) | 0.13308 (8) | 0.70774 (6) | 0.0466 (2) | |
Cl6 | 0.73926 (9) | 0.78959 (7) | 0.48139 (5) | 0.0452 (2) | 0.553 (2) |
C54 | 0.7043 (6) | 0.7713 (6) | 0.5778 (4) | 0.0381 (12) | 0.553 (2) |
H54A | 0.7724 | 0.7711 | 0.6187 | 0.046* | 0.553 (2) |
H54B | 0.6388 | 0.7006 | 0.5643 | 0.046* | 0.553 (2) |
Cl7 | 0.66451 (19) | 0.87697 (16) | 0.62695 (12) | 0.0393 (3) | 0.553 (2) |
Cl6' | 0.73926 (9) | 0.78959 (7) | 0.48139 (5) | 0.0452 (2) | 0.447 (2) |
C54' | 0.7452 (7) | 0.8276 (8) | 0.5904 (5) | 0.0381 (12) | 0.447 (2) |
H54C | 0.7591 | 0.7738 | 0.6178 | 0.046* | 0.447 (2) |
H54D | 0.8103 | 0.8986 | 0.6206 | 0.046* | 0.447 (2) |
Cl7' | 0.6138 (2) | 0.8357 (2) | 0.59866 (16) | 0.0393 (3) | 0.447 (2) |
O3 | 0.9752 (2) | 0.01143 (18) | 0.83235 (15) | 0.0305 (4) | |
H3A | 0.928 (3) | −0.047 (3) | 0.826 (2) | 0.031 (9)* | |
H3B | 1.011 (3) | 0.057 (3) | 0.877 (3) | 0.043 (11)* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Pd1 | 0.01213 (7) | 0.01655 (7) | 0.01153 (7) | 0.00649 (5) | 0.00305 (5) | 0.00260 (5) |
Cl1 | 0.0150 (2) | 0.0249 (3) | 0.0189 (2) | 0.0110 (2) | 0.00325 (18) | 0.0052 (2) |
P1 | 0.0124 (2) | 0.0149 (2) | 0.0121 (2) | 0.00598 (19) | 0.00271 (18) | 0.00287 (19) |
P2 | 0.0139 (2) | 0.0151 (2) | 0.0120 (2) | 0.00681 (19) | 0.00234 (19) | 0.00249 (19) |
S1 | 0.0167 (2) | 0.0224 (3) | 0.0140 (2) | 0.0091 (2) | 0.00521 (19) | 0.0043 (2) |
O1 | 0.0253 (9) | 0.0250 (9) | 0.0218 (9) | 0.0106 (7) | 0.0092 (7) | −0.0001 (7) |
O2 | 0.0208 (8) | 0.0322 (9) | 0.0205 (8) | 0.0115 (7) | 0.0047 (7) | 0.0096 (7) |
C1 | 0.0144 (9) | 0.0172 (9) | 0.0154 (10) | 0.0062 (8) | 0.0042 (7) | 0.0029 (7) |
C2 | 0.0190 (10) | 0.0209 (10) | 0.0158 (10) | 0.0068 (8) | 0.0040 (8) | 0.0046 (8) |
C3 | 0.0217 (10) | 0.0188 (10) | 0.0219 (11) | 0.0043 (9) | 0.0079 (9) | 0.0058 (9) |
C4 | 0.0158 (10) | 0.0236 (11) | 0.0215 (11) | 0.0040 (9) | 0.0033 (8) | 0.0002 (9) |
C5 | 0.0147 (9) | 0.0287 (12) | 0.0183 (11) | 0.0061 (9) | 0.0007 (8) | 0.0037 (9) |
C6 | 0.0154 (9) | 0.0237 (11) | 0.0158 (10) | 0.0075 (8) | 0.0029 (8) | 0.0051 (8) |
C7 | 0.0142 (9) | 0.0186 (10) | 0.0169 (10) | 0.0070 (8) | 0.0023 (7) | 0.0066 (8) |
C8 | 0.0207 (10) | 0.0202 (10) | 0.0233 (11) | 0.0100 (9) | 0.0036 (9) | 0.0063 (9) |
C9 | 0.0300 (13) | 0.0213 (11) | 0.0314 (14) | 0.0117 (10) | 0.0030 (11) | 0.0111 (10) |
C10 | 0.0284 (13) | 0.0301 (13) | 0.0310 (14) | 0.0106 (11) | 0.0037 (11) | 0.0185 (11) |
C11 | 0.0208 (11) | 0.0344 (13) | 0.0176 (11) | 0.0084 (10) | 0.0044 (9) | 0.0123 (10) |
C12 | 0.0167 (9) | 0.0225 (10) | 0.0183 (10) | 0.0072 (8) | 0.0038 (8) | 0.0065 (8) |
C13 | 0.0130 (8) | 0.0156 (9) | 0.0140 (9) | 0.0062 (7) | 0.0033 (7) | 0.0043 (7) |
C14 | 0.0124 (8) | 0.0166 (9) | 0.0143 (9) | 0.0066 (7) | 0.0040 (7) | 0.0044 (7) |
C15 | 0.0172 (9) | 0.0160 (9) | 0.0180 (10) | 0.0066 (8) | 0.0047 (8) | 0.0030 (8) |
C16 | 0.0184 (10) | 0.0159 (9) | 0.0242 (11) | 0.0068 (8) | 0.0068 (9) | 0.0058 (8) |
C17 | 0.0209 (10) | 0.0239 (11) | 0.0276 (12) | 0.0093 (9) | 0.0094 (9) | 0.0145 (10) |
C18 | 0.0252 (12) | 0.0344 (13) | 0.0263 (13) | 0.0147 (11) | 0.0150 (10) | 0.0181 (11) |
C19 | 0.0253 (11) | 0.0317 (13) | 0.0204 (11) | 0.0157 (10) | 0.0125 (9) | 0.0103 (10) |
C20 | 0.0187 (10) | 0.0224 (10) | 0.0184 (10) | 0.0107 (9) | 0.0065 (8) | 0.0059 (8) |
C21 | 0.0141 (9) | 0.0193 (10) | 0.0166 (10) | 0.0074 (8) | 0.0047 (7) | 0.0066 (8) |
C22 | 0.0151 (9) | 0.0197 (10) | 0.0207 (11) | 0.0078 (8) | 0.0053 (8) | 0.0080 (8) |
C23 | 0.0160 (9) | 0.0167 (9) | 0.0107 (9) | 0.0085 (7) | 0.0042 (7) | 0.0035 (7) |
C24 | 0.0146 (9) | 0.0174 (9) | 0.0122 (9) | 0.0077 (7) | 0.0034 (7) | 0.0036 (7) |
C25 | 0.0162 (9) | 0.0168 (9) | 0.0150 (10) | 0.0060 (8) | 0.0037 (8) | 0.0034 (7) |
C26 | 0.0200 (10) | 0.0167 (9) | 0.0166 (10) | 0.0083 (8) | 0.0045 (8) | 0.0044 (8) |
C27 | 0.0244 (11) | 0.0237 (11) | 0.0207 (11) | 0.0154 (9) | 0.0072 (9) | 0.0062 (9) |
C28 | 0.0234 (11) | 0.0310 (12) | 0.0200 (11) | 0.0185 (10) | 0.0059 (9) | 0.0061 (9) |
C29 | 0.0183 (10) | 0.0308 (12) | 0.0214 (11) | 0.0133 (9) | 0.0049 (9) | 0.0048 (9) |
C30 | 0.0161 (9) | 0.0207 (10) | 0.0196 (11) | 0.0091 (8) | 0.0051 (8) | 0.0044 (8) |
C31 | 0.0151 (9) | 0.0196 (10) | 0.0136 (9) | 0.0103 (8) | 0.0033 (7) | 0.0033 (7) |
C32 | 0.0189 (9) | 0.0195 (10) | 0.0128 (9) | 0.0105 (8) | 0.0041 (8) | 0.0040 (8) |
C33 | 0.0184 (9) | 0.0200 (10) | 0.0128 (9) | 0.0097 (8) | 0.0026 (7) | 0.0047 (8) |
C34 | 0.0244 (11) | 0.0197 (10) | 0.0203 (11) | 0.0102 (9) | 0.0091 (9) | 0.0071 (8) |
C35 | 0.0349 (14) | 0.0266 (12) | 0.0286 (13) | 0.0188 (11) | 0.0149 (11) | 0.0123 (10) |
C36 | 0.0396 (15) | 0.0334 (14) | 0.0223 (12) | 0.0270 (12) | 0.0102 (11) | 0.0106 (10) |
C37 | 0.0265 (12) | 0.0385 (14) | 0.0183 (11) | 0.0216 (11) | 0.0057 (9) | 0.0066 (10) |
C38 | 0.0200 (10) | 0.0236 (11) | 0.0164 (10) | 0.0121 (9) | 0.0033 (8) | 0.0047 (8) |
C39 | 0.0154 (9) | 0.0174 (9) | 0.0139 (9) | 0.0059 (8) | 0.0031 (7) | 0.0018 (7) |
C40 | 0.0168 (9) | 0.0188 (10) | 0.0187 (10) | 0.0070 (8) | 0.0051 (8) | 0.0041 (8) |
C41 | 0.0211 (10) | 0.0191 (10) | 0.0232 (12) | 0.0071 (9) | 0.0084 (9) | 0.0019 (9) |
C42 | 0.0216 (11) | 0.0230 (11) | 0.0186 (11) | 0.0049 (9) | 0.0034 (9) | −0.0039 (9) |
C43 | 0.0193 (10) | 0.0293 (12) | 0.0171 (11) | 0.0079 (9) | −0.0008 (9) | −0.0005 (9) |
C44 | 0.0170 (10) | 0.0251 (11) | 0.0167 (10) | 0.0089 (9) | 0.0021 (8) | 0.0012 (8) |
C45 | 0.0197 (10) | 0.0228 (10) | 0.0162 (10) | 0.0102 (9) | 0.0073 (8) | 0.0067 (8) |
C46 | 0.0200 (10) | 0.0254 (11) | 0.0217 (11) | 0.0115 (9) | 0.0076 (9) | 0.0086 (9) |
C47 | 0.0207 (11) | 0.0269 (12) | 0.0244 (12) | 0.0100 (9) | 0.0076 (9) | 0.0096 (10) |
C48 | 0.0291 (12) | 0.0240 (11) | 0.0220 (12) | 0.0068 (10) | 0.0118 (10) | 0.0090 (9) |
C49 | 0.0317 (13) | 0.0240 (11) | 0.0247 (12) | 0.0154 (10) | 0.0138 (10) | 0.0096 (9) |
C50 | 0.0238 (11) | 0.0286 (12) | 0.0216 (11) | 0.0151 (10) | 0.0097 (9) | 0.0112 (9) |
C51 | 0.0398 (17) | 0.0318 (15) | 0.0430 (18) | 0.0057 (13) | 0.0163 (14) | 0.0080 (13) |
C52 | 0.0323 (14) | 0.0372 (16) | 0.0397 (17) | 0.0119 (13) | 0.0122 (13) | 0.0137 (13) |
Cl2 | 0.0384 (4) | 0.0423 (4) | 0.0327 (4) | 0.0181 (3) | 0.0068 (3) | −0.0005 (3) |
Cl3 | 0.0573 (5) | 0.0453 (4) | 0.0440 (5) | 0.0247 (4) | 0.0166 (4) | 0.0253 (4) |
C53 | 0.056 (2) | 0.0401 (16) | 0.0255 (14) | 0.0281 (16) | 0.0060 (13) | 0.0103 (12) |
Cl4 | 0.0502 (5) | 0.0647 (6) | 0.0435 (5) | 0.0307 (4) | 0.0237 (4) | 0.0243 (4) |
Cl5 | 0.0543 (5) | 0.0491 (5) | 0.0316 (4) | 0.0198 (4) | 0.0004 (4) | 0.0130 (3) |
Cl6 | 0.0676 (6) | 0.0487 (5) | 0.0301 (4) | 0.0341 (4) | 0.0169 (4) | 0.0115 (3) |
C54 | 0.037 (3) | 0.051 (3) | 0.027 (2) | 0.021 (3) | 0.006 (2) | 0.011 (3) |
Cl7 | 0.0555 (10) | 0.0419 (9) | 0.0355 (8) | 0.0298 (7) | 0.0203 (7) | 0.0163 (6) |
Cl6' | 0.0676 (6) | 0.0487 (5) | 0.0301 (4) | 0.0341 (4) | 0.0169 (4) | 0.0115 (3) |
C54' | 0.037 (3) | 0.051 (3) | 0.027 (2) | 0.021 (3) | 0.006 (2) | 0.011 (3) |
Cl7' | 0.0555 (10) | 0.0419 (9) | 0.0355 (8) | 0.0298 (7) | 0.0203 (7) | 0.0163 (6) |
O3 | 0.0340 (11) | 0.0235 (10) | 0.0307 (11) | 0.0067 (9) | 0.0145 (9) | 0.0032 (9) |
Pd1—P2 | 2.2574 (6) | C27—H27 | 0.9500 |
Pd1—P1 | 2.2990 (7) | C28—C29 | 1.406 (4) |
Pd1—S1 | 2.3331 (7) | C28—H28 | 0.9500 |
Pd1—Cl1 | 2.3710 (6) | C29—C30 | 1.369 (3) |
P1—C7 | 1.803 (2) | C29—H29 | 0.9500 |
P1—C1 | 1.819 (2) | C30—C31 | 1.414 (3) |
P1—C24 | 1.824 (2) | C30—H30 | 0.9500 |
P2—C33 | 1.806 (2) | C31—C32 | 1.425 (3) |
P2—C39 | 1.816 (2) | C33—C34 | 1.388 (3) |
P2—C14 | 1.834 (2) | C33—C38 | 1.395 (3) |
S1—O2 | 1.4609 (18) | C34—C35 | 1.393 (3) |
S1—O1 | 1.4663 (18) | C34—H34 | 0.9500 |
S1—C45 | 1.791 (2) | C35—C36 | 1.387 (4) |
C1—C6 | 1.399 (3) | C35—H35 | 0.9500 |
C1—C2 | 1.400 (3) | C36—C37 | 1.383 (4) |
C2—C3 | 1.382 (3) | C36—H36 | 0.9500 |
C2—H2 | 0.9500 | C37—C38 | 1.391 (3) |
C3—C4 | 1.386 (3) | C37—H37 | 0.9500 |
C3—H3 | 0.9500 | C38—H38 | 0.9500 |
C4—C5 | 1.384 (4) | C39—C44 | 1.394 (3) |
C4—H4 | 0.9500 | C39—C40 | 1.399 (3) |
C5—C6 | 1.394 (3) | C40—C41 | 1.382 (3) |
C5—H5 | 0.9500 | C40—H40 | 0.9500 |
C6—H6 | 0.9500 | C41—C42 | 1.384 (4) |
C7—C8 | 1.393 (3) | C41—H41 | 0.9500 |
C7—C12 | 1.395 (3) | C42—C43 | 1.383 (4) |
C8—C9 | 1.385 (4) | C42—H42 | 0.9500 |
C8—H8 | 0.9500 | C43—C44 | 1.395 (3) |
C9—C10 | 1.386 (4) | C43—H43 | 0.9500 |
C9—H9 | 0.9500 | C44—H44 | 0.9500 |
C10—C11 | 1.385 (4) | C45—C50 | 1.387 (3) |
C10—H10 | 0.9500 | C45—C46 | 1.389 (3) |
C11—C12 | 1.388 (3) | C46—C47 | 1.390 (4) |
C11—H11 | 0.9500 | C46—H46 | 0.9500 |
C12—H12 | 0.9500 | C47—C48 | 1.395 (4) |
C13—C14 | 1.392 (3) | C47—H47 | 0.9500 |
C13—C21 | 1.431 (3) | C48—C49 | 1.392 (4) |
C13—C23 | 1.500 (3) | C48—C51 | 1.491 (4) |
C14—C15 | 1.421 (3) | C49—C50 | 1.372 (4) |
C15—C16 | 1.365 (3) | C49—H49 | 0.9500 |
C15—H15 | 0.9500 | C50—H50 | 0.9500 |
C16—C22 | 1.406 (3) | C51—H51A | 0.9800 |
C16—H16 | 0.9500 | C51—H51B | 0.9800 |
C17—C18 | 1.364 (4) | C51—H51C | 0.9800 |
C17—C22 | 1.418 (3) | C52—Cl2 | 1.747 (3) |
C17—H17 | 0.9500 | C52—Cl3 | 1.766 (3) |
C18—C19 | 1.408 (4) | C52—H52A | 0.9900 |
C18—H18 | 0.9500 | C52—H52B | 0.9900 |
C19—C20 | 1.367 (3) | C53—Cl4 | 1.769 (4) |
C19—H19 | 0.9500 | C53—Cl5 | 1.792 (3) |
C20—C21 | 1.419 (3) | C53—H53A | 0.9900 |
C20—H20 | 0.9500 | C53—H53B | 0.9900 |
C21—C22 | 1.423 (3) | Cl6—C54 | 1.782 (6) |
C23—C24 | 1.391 (3) | C54—Cl7 | 1.788 (6) |
C23—C31 | 1.431 (3) | C54—H54A | 0.9900 |
C24—C25 | 1.414 (3) | C54—H54B | 0.9900 |
C25—C26 | 1.367 (3) | C54'—Cl7' | 1.741 (8) |
C25—H25 | 0.9500 | C54'—H54C | 0.9900 |
C26—C32 | 1.412 (3) | C54'—H54D | 0.9900 |
C26—H26 | 0.9500 | O3—H3A | 0.78 (4) |
C27—C28 | 1.363 (4) | O3—H3B | 0.80 (4) |
C27—C32 | 1.418 (3) | ||
P2—Pd1—P1 | 92.92 (2) | C32—C26—H26 | 119.6 |
P2—Pd1—S1 | 93.84 (2) | C28—C27—C32 | 120.9 (2) |
P1—Pd1—S1 | 159.89 (2) | C28—C27—H27 | 119.5 |
P2—Pd1—Cl1 | 159.39 (2) | C32—C27—H27 | 119.5 |
P1—Pd1—Cl1 | 88.60 (2) | C27—C28—C29 | 120.1 (2) |
S1—Pd1—Cl1 | 91.67 (2) | C27—C28—H28 | 120.0 |
C7—P1—C1 | 108.21 (10) | C29—C28—H28 | 120.0 |
C7—P1—C24 | 106.06 (10) | C30—C29—C28 | 120.6 (2) |
C1—P1—C24 | 105.61 (10) | C30—C29—H29 | 119.7 |
C7—P1—Pd1 | 118.23 (8) | C28—C29—H29 | 119.7 |
C1—P1—Pd1 | 105.45 (8) | C29—C30—C31 | 121.0 (2) |
C24—P1—Pd1 | 112.55 (7) | C29—C30—H30 | 119.5 |
C33—P2—C39 | 108.31 (10) | C31—C30—H30 | 119.5 |
C33—P2—C14 | 106.74 (10) | C30—C31—C32 | 118.37 (19) |
C39—P2—C14 | 105.27 (10) | C30—C31—C23 | 122.5 (2) |
C33—P2—Pd1 | 120.21 (8) | C32—C31—C23 | 119.1 (2) |
C39—P2—Pd1 | 107.15 (7) | C26—C32—C27 | 121.8 (2) |
C14—P2—Pd1 | 108.24 (7) | C26—C32—C31 | 119.15 (19) |
O2—S1—O1 | 115.97 (11) | C27—C32—C31 | 119.1 (2) |
O2—S1—C45 | 104.74 (11) | C34—C33—C38 | 120.0 (2) |
O1—S1—C45 | 105.94 (11) | C34—C33—P2 | 119.65 (18) |
O2—S1—Pd1 | 112.78 (8) | C38—C33—P2 | 120.36 (18) |
O1—S1—Pd1 | 116.91 (8) | C33—C34—C35 | 120.1 (2) |
C45—S1—Pd1 | 97.59 (8) | C33—C34—H34 | 120.0 |
C6—C1—C2 | 119.3 (2) | C35—C34—H34 | 120.0 |
C6—C1—P1 | 122.67 (18) | C36—C35—C34 | 119.7 (3) |
C2—C1—P1 | 117.86 (17) | C36—C35—H35 | 120.1 |
C3—C2—C1 | 120.3 (2) | C34—C35—H35 | 120.1 |
C3—C2—H2 | 119.9 | C37—C36—C35 | 120.4 (2) |
C1—C2—H2 | 119.9 | C37—C36—H36 | 119.8 |
C2—C3—C4 | 120.3 (2) | C35—C36—H36 | 119.8 |
C2—C3—H3 | 119.9 | C36—C37—C38 | 120.2 (2) |
C4—C3—H3 | 119.9 | C36—C37—H37 | 119.9 |
C5—C4—C3 | 120.0 (2) | C38—C37—H37 | 119.9 |
C5—C4—H4 | 120.0 | C37—C38—C33 | 119.6 (2) |
C3—C4—H4 | 120.0 | C37—C38—H38 | 120.2 |
C4—C5—C6 | 120.3 (2) | C33—C38—H38 | 120.2 |
C4—C5—H5 | 119.8 | C44—C39—C40 | 119.9 (2) |
C6—C5—H5 | 119.8 | C44—C39—P2 | 122.74 (17) |
C5—C6—C1 | 119.8 (2) | C40—C39—P2 | 117.27 (16) |
C5—C6—H6 | 120.1 | C41—C40—C39 | 120.2 (2) |
C1—C6—H6 | 120.1 | C41—C40—H40 | 119.9 |
C8—C7—C12 | 120.0 (2) | C39—C40—H40 | 119.9 |
C8—C7—P1 | 119.69 (18) | C40—C41—C42 | 119.8 (2) |
C12—C7—P1 | 120.21 (17) | C40—C41—H41 | 120.1 |
C9—C8—C7 | 119.6 (2) | C42—C41—H41 | 120.1 |
C9—C8—H8 | 120.2 | C43—C42—C41 | 120.4 (2) |
C7—C8—H8 | 120.2 | C43—C42—H42 | 119.8 |
C8—C9—C10 | 120.6 (2) | C41—C42—H42 | 119.8 |
C8—C9—H9 | 119.7 | C42—C43—C44 | 120.5 (2) |
C10—C9—H9 | 119.7 | C42—C43—H43 | 119.8 |
C11—C10—C9 | 119.8 (2) | C44—C43—H43 | 119.8 |
C11—C10—H10 | 120.1 | C39—C44—C43 | 119.2 (2) |
C9—C10—H10 | 120.1 | C39—C44—H44 | 120.4 |
C10—C11—C12 | 120.3 (2) | C43—C44—H44 | 120.4 |
C10—C11—H11 | 119.9 | C50—C45—C46 | 120.1 (2) |
C12—C11—H11 | 119.9 | C50—C45—S1 | 119.32 (18) |
C11—C12—C7 | 119.7 (2) | C46—C45—S1 | 120.44 (18) |
C11—C12—H12 | 120.1 | C45—C46—C47 | 119.1 (2) |
C7—C12—H12 | 120.1 | C45—C46—H46 | 120.4 |
C14—C13—C21 | 119.65 (19) | C47—C46—H46 | 120.4 |
C14—C13—C23 | 121.15 (19) | C46—C47—C48 | 120.9 (2) |
C21—C13—C23 | 119.20 (19) | C46—C47—H47 | 119.5 |
C13—C14—C15 | 119.6 (2) | C48—C47—H47 | 119.5 |
C13—C14—P2 | 122.00 (16) | C49—C48—C47 | 118.8 (2) |
C15—C14—P2 | 118.05 (16) | C49—C48—C51 | 121.2 (3) |
C16—C15—C14 | 120.9 (2) | C47—C48—C51 | 120.0 (3) |
C16—C15—H15 | 119.5 | C50—C49—C48 | 120.5 (2) |
C14—C15—H15 | 119.5 | C50—C49—H49 | 119.7 |
C15—C16—C22 | 121.1 (2) | C48—C49—H49 | 119.7 |
C15—C16—H16 | 119.4 | C49—C50—C45 | 120.5 (2) |
C22—C16—H16 | 119.4 | C49—C50—H50 | 119.8 |
C18—C17—C22 | 120.9 (2) | C45—C50—H50 | 119.8 |
C18—C17—H17 | 119.6 | C48—C51—H51A | 109.5 |
C22—C17—H17 | 119.6 | C48—C51—H51B | 109.5 |
C17—C18—C19 | 119.6 (2) | H51A—C51—H51B | 109.5 |
C17—C18—H18 | 120.2 | C48—C51—H51C | 109.5 |
C19—C18—H18 | 120.2 | H51A—C51—H51C | 109.5 |
C20—C19—C18 | 121.0 (2) | H51B—C51—H51C | 109.5 |
C20—C19—H19 | 119.5 | Cl2—C52—Cl3 | 111.26 (17) |
C18—C19—H19 | 119.5 | Cl2—C52—H52A | 109.4 |
C19—C20—C21 | 120.9 (2) | Cl3—C52—H52A | 109.4 |
C19—C20—H20 | 119.5 | Cl2—C52—H52B | 109.4 |
C21—C20—H20 | 119.5 | Cl3—C52—H52B | 109.4 |
C20—C21—C22 | 117.9 (2) | H52A—C52—H52B | 108.0 |
C20—C21—C13 | 122.5 (2) | Cl4—C53—Cl5 | 111.35 (17) |
C22—C21—C13 | 119.6 (2) | Cl4—C53—H53A | 109.4 |
C16—C22—C17 | 121.4 (2) | Cl5—C53—H53A | 109.4 |
C16—C22—C21 | 119.0 (2) | Cl4—C53—H53B | 109.4 |
C17—C22—C21 | 119.6 (2) | Cl5—C53—H53B | 109.4 |
C24—C23—C31 | 120.03 (19) | H53A—C53—H53B | 108.0 |
C24—C23—C13 | 121.13 (18) | Cl6—C54—Cl7 | 110.8 (4) |
C31—C23—C13 | 118.83 (19) | Cl6—C54—H54A | 109.5 |
C23—C24—C25 | 119.63 (19) | Cl7—C54—H54A | 109.5 |
C23—C24—P1 | 120.38 (16) | Cl6—C54—H54B | 109.5 |
C25—C24—P1 | 119.65 (16) | Cl7—C54—H54B | 109.5 |
C26—C25—C24 | 121.2 (2) | H54A—C54—H54B | 108.1 |
C26—C25—H25 | 119.4 | Cl7'—C54'—H54C | 109.8 |
C24—C25—H25 | 119.4 | Cl7'—C54'—H54D | 109.8 |
C25—C26—C32 | 120.8 (2) | H54C—C54'—H54D | 108.3 |
C25—C26—H26 | 119.6 | H3A—O3—H3B | 124 (4) |
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H3A···Cl1i | 0.78 (4) | 2.49 (4) | 3.236 (2) | 159 (3) |
O3—H3B···O1ii | 0.80 (4) | 2.07 (4) | 2.834 (3) | 162 (4) |
Symmetry codes: (i) −x+2, −y, −z+1; (ii) x, y, z+1. |
Experimental details
Crystal data | |
Chemical formula | [Pd(C7H7O2S)Cl(C44H32P2)]·3CH2Cl2·H2O |
Mr | 1192.47 |
Crystal system, space group | Triclinic, P1 |
Temperature (K) | 100 |
a, b, c (Å) | 12.7273 (12), 13.7474 (13), 16.533 (3) |
α, β, γ (°) | 101.808 (2), 101.339 (2), 109.743 (2) |
V (Å3) | 2551.8 (5) |
Z | 2 |
Radiation type | Mo Kα |
µ (mm−1) | 0.88 |
Crystal size (mm) | 0.34 × 0.18 × 0.06 |
Data collection | |
Diffractometer | Bruker SMART APEXII CCD |
Absorption correction | Multi-scan (SADABS; Sheldrick, 2007) |
Tmin, Tmax | 0.754, 0.949 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 55527, 22145, 15533 |
Rint | 0.051 |
(sin θ/λ)max (Å−1) | 0.806 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.051, 0.128, 1.03 |
No. of reflections | 22145 |
No. of parameters | 629 |
No. of restraints | 3 |
H-atom treatment | H atoms treated by a mixture of independent and constrained refinement |
Δρmax, Δρmin (e Å−3) | 3.12, −1.19 |
Computer programs: APEX2 (Bruker, 2007), SAINT (Bruker, 2007), SIR97 (Altomare et al., 1999), SHELXL97 (Sheldrick, 2008), SHELXTL (Sheldrick, 2008).
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H3A···Cl1i | 0.78 (4) | 2.49 (4) | 3.236 (2) | 159 (3) |
O3—H3B···O1ii | 0.80 (4) | 2.07 (4) | 2.834 (3) | 162 (4) |
Symmetry codes: (i) −x+2, −y, −z+1; (ii) x, y, z+1. |
Acknowledgements
Acknowledgment is made to the University of Rochester and the donors of the American Chemical Society Petroleum Research Fund for partial support of this work.
References
Allen, F. H. (2002). Acta Cryst. B58, 380–388. Web of Science CSD CrossRef CAS IUCr Journals Google Scholar
Altomare, A., Burla, M. C., Camalli, M., Cascarano, G. L., Giacovazzo, C., Guagliardi, A., Moliterni, A. G. G., Polidori, G. & Spagna, R. (1999). J. Appl. Cryst. 32, 115–119. Web of Science CrossRef CAS IUCr Journals Google Scholar
Bruker (2007). APEX2 and SAINT. Bruker AXS Inc., Madison, Wisconsin, USA. Google Scholar
Kashiwabara, T. & Tanaka, M. (2005). Tetrahedron Lett. 46, 7125–7128. Web of Science CrossRef CAS Google Scholar
Li, K., Guzei, I. A. & Darkwa, J. (2003). Polyhedron, 22, 805–810. Web of Science CSD CrossRef CAS Google Scholar
Ozawa, F., Kubo, A., Matsumoto, Y., Hayashi, T., Nishioka, E., Yanagi, K. & Moriguchi, K. (1993). Organometallics, 12, 4188–4196. CSD CrossRef CAS Web of Science Google Scholar
Sheldrick, G. M. (2007). SADABS. University of Göttingen, Germany. Google Scholar
Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. Web of Science CrossRef CAS IUCr Journals Google Scholar
This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
We report the synthesis, isolation and structural characterization of the title compound, (BINAP)Pd(SO2-4-methylphenyl)Cl, BINAP = 2,2'-bis(diphenylphosphano)-1,1'-binaphthyl. To date the only other structurally characterized palladium complex with a related ligand set (biphosphane, SO2R, halide) is (dppf)Pd(SO2Me)Cl, dppf = 1,1'-bis(diphenylphosphanyl)ferrocene, synthesized via insertion of SO2 into the Pd–C bond of (dppf)Pd(Me)Cl (Li et al., 2003, CSD refcode WUYJUV (Allen, 2002)). The distorted square planar geometry around the metal center is typical for 16-electron palladium complexes, with the cis angles ranging from 88.60 (2) to 93.84 (2)° and with a twist angle between the P–Pd–P and S–Pd–Cl planes of 28.11 (2)°. The biphosphane bite angle is 92.92 (2)°. While the Pd–S and Pd–Cl bond lengths in the title compound are similar to those in (dppf)Pd(SO2Me)Cl, the individual and average Pd–P bond lengths are shorter in the title compound than they are in the latter complex: the average Pd–P bond lengths are 2.2782 (9) and 2.3436 (11) Å, respectively (Li et al., 2003).
The asymmetric unit contains one palladium monomer, one water and three dichloromethane solvent molecules, all with atoms in general positions (Fig. 1). One dichloromethane molecule is modeled as disordered over two positions (55:45). Larger units are formed via hydrogen bonding among two palladium and two water molecules (Fig. 2).