Synthesis and Structure of Cis-[Dichloro(Triphenylphosphine)(Diethylsulfoxido)¬Platinum (II)]

Authors

  • A. R. Tkacheva Author
  • V. V. Sharutin Author

Abstract

The interaction  of  hexachloroplatinic acid and 2-butenyl-bis(triphenylphosphonium) chloride in acetonitrile in the presence of diethyl sulfoxide synthesized cis-[dichloro(triphenylphosphine)-
(diethylsulfoxide) platinum(II)], cis-[PtCl2(SOEt2)(PPh3)] (1), the yield of which after recrystallization from  triethylamine was 75 %. The product structure was determined by XRDA and IR. The X-ray diffraction pattern of crystal I was obtained at 293 K on an automatic diffractometer D8 Quest Broker (MoKα radiation, λ = 0.71073 Å, graphite monochromator), platinum atom in compound 1 has square-planar coordination [C22H25PCl2SOPt, M 634.44; the triclinic syngony, the symmetry group P1; cell parameters: a = 10.367(4), b = 10.416(4), c = 12.389(8) Å;
a = 102.53 (3) degrees, β = 95.30 (3) degrees, g = 116.087(16) degrees; V = 1145.6 (9) Å3; the crystal size is 0.66 × 0.36 × 0.06 mm; intervals of reflection indexes -16 ≤ h ≤ 19,
 -18 ≤ k ≤ 19, -22 ≤ l ≤ 22; total reflections 25761; independent disclosures 21895; Rint 0.0299; GOOF 1.116; R1 = 0.0849; wR2 = 0.1705; residual electron density 6.52 /-3.85 e/ Å3]. The chlorine atoms occupy two cis positions, being in the trans position with respect to the phosphine and sulfoxide ligands. Distance Pt-Cl 2.315(5)-2.367(7) Å is longer than Pt-PPh3 2.295(5) and Pt-S 2.230(4) Å. Cis-angles Cl(1)PtCl(2) equal 88.6 (3)°, S(1)Pt(1)Cl(2) 88.1(3)°, S(1)Pt(1)P(1) 92.13(17)°, Cl(1)Pt(1)P(1) 91.07(18)°, trans-angles equal S(1)PtCl(1) 175.3(2)°, Cl(2)Pt(1)P(1) 177.8(3)°. Complete tables of coordinates of atoms, bond lengths and valence angles are deposited at the Cambridge Structural Data
(No. 1849140 deposit@ccdc.cam.ac.uk; http: //www.ccdc cam.ac.uk.)

Author Biographies

  • A. R. Tkacheva
    аспирант, кафедра теоретической и прикладной химии
  • V. V. Sharutin
    доктор химических наук, профессор, старший науч- ный сотрудник УНИД

Published

2018-10-19