NEW DIALKYL TELLURIDES - SYNTHESIS AND LIGAND PROPERTIES OF TE((CH2)NSI(CH3)3)2 (N=1,3) AND CRYSTAL-STRUCTURE OF TRANS-PD(SCN)2[TE(CH2CH2CH2SI(CH3)3)2]2

被引:45
作者
GYSLING, HJ
LUSS, HR
SMITH, DL
机构
[1] Research Laboratories, Eastman Kodak Company, Rochester
关键词
D O I
10.1021/ic50200a012
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The dialkyl tellurides Te((CH2)nSi(CH3)3)2 (n=1, 3) have been prepared by alkylation of Na2Te with the corresponding alkyl chlorides. Coordination complexes of these two new, somewhat air-sensitive, liquid ligands with palladium chloride and thiocyanate (i. e., PdX2[Te((CH2)„Si(CH3)j)2]2) have been prepared. The complexes have a trans geometry on the basis of their infrared and Raman spectra. Infrared and 1H NMR spectra support Pd-SCN bonding modes for the thiocyanate complexes in the solids and CHC13 solutions. A single-crystal X-ray structure determination has confirmed the proposed structure of trnas-Pd (SCN)2[Te(CH2CH2CH2Si(CH3)3)2]2. The square-planar complex contains two sulfur-bonded thiocyanates in a trans arrangement. The configuration at tellurium is pyramidal with a stereochemically active lone pair of electrons at the fourth corner of a tetrahedron. There is probably some γ bonding between sulfur and palladium but not between tellurium and palladium. The crystals are monoclinic, P21/c with [formula omitted] The structure was solved by the heavy-atom method and refined by block-diagonal least squares to R=0.082 for 3173 observed reflections. The thiocyanate complexes retain the sulfur-bonding mode in CHC13 solution, but formation of some cis isomers is suggested by their infrared spectra. © 1979, American Chemical Society. All rights reserved.
引用
收藏
页码:2696 / 2700
页数:5
相关论文
共 50 条
[31]   Thermal reaction of (CH3)(2)C=C(CH3)(2) in the presence of di-tert-butyl peroxide; Reactions of the radicals center dot CH3,(CH3)(3)C center dot C(CH3)(2) and (CH3)(2)C=C(CH3)center dot CH2 [J].
Kortvelyesi, T ;
Seres, L .
JOURNAL DE CHIMIE PHYSIQUE ET DE PHYSICO-CHIMIE BIOLOGIQUE, 1996, 93 (02) :253-273
[32]   Electronic Structure of trans-[VIICl2(E(CH3)2CH2CH2E(CH3)2)2], E=N, P [J].
Jafari, Mehrafshan G. ;
Zolnhofer, Eva M. ;
Fehn, Dominik ;
Heinemann, Frank W. ;
Opalade, Adedamola A. ;
Carroll, Patrick J. ;
Meyer, Karsten ;
Krzystek, J. ;
Ozarowski, Andrew ;
Mindiola, Daniel J. ;
Jackson, Timothy A. ;
Telser, Joshua .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2024, 27 (34)
[33]   EXCESS MOLAR ENTHALPIES OF (X(1)CH(3)CH(2)COCH(2)CH(3)+X(2)CH(3)(CH2)(4)CH3+(1-X(1)-X(2))CH3(CH2)(V-2)CH3) (V=9 AND 12) AT THE TEMPERATURE 298.15 K [J].
LOPEZ, M ;
CARBALLO, E ;
LEGIDO, JL ;
SALGADO, J ;
VIJANDE, J ;
ANDRADE, MIP .
JOURNAL OF CHEMICAL THERMODYNAMICS, 1995, 27 (08) :879-886
[34]   SOLVENT-FREE SYNTHESIS OF TETRAMETHYLAMMONIUM SALTS - SYNTHESIS AND CHARACTERIZATION OF [N(CH3)(4)](2)[C2O4], [N(CH3)(4)][CO3CH4], [N(CH3)(4)][NO2], [N(CH3)(4)][CO2H], AND [N(CH3)(4)][O2C(CH2)(2)CO2CH3] [J].
ALBERT, B ;
JANSEN, M .
ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 1995, 621 (10) :1735-1740
[35]   RYDBERG LEVELS IN CH2 AND CH3 [J].
COULSON, CA ;
STAMPER, JG .
MOLECULAR PHYSICS, 1963, 6 (06) :609-619
[36]   Structures of Pt2(CH3)4(S(CH3)2)2 and [PtPh2(S(CH3)2)]n (n=2, 3) [J].
Song, DT ;
Wang, SN .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 2002, 648 (1-2) :302-305
[37]   New Organyltriphenylphosphonium Hexabromoplatinates [Ph3PR]2[PtBr6], R = CH3, CH=CH2, CH2CH=CH2 [J].
A. R. Zykova ;
V. V. Sharutin ;
O. K. Sharutina .
Russian Journal of Inorganic Chemistry, 2021, 66 :56-60
[38]   New Organyltriphenylphosphonium Hexabromoplatinates [Ph3PR]2[PtBr6], R = CH3, CH=CH2, CH2CH=CH2 [J].
Zykova, A. R. ;
Sharutin, V. V. ;
Sharutina, O. K. .
RUSSIAN JOURNAL OF INORGANIC CHEMISTRY, 2021, 66 (01) :56-60
[39]   FUNCTIONALIZED SPHEROSILICATES - SYNTHESIS AND CHARACTERIZATION OF [SI8O1.58] (OSI(CH3)2-CH=CH2)8 [SI10O1.510] (OSI(CH3)2-CH=CH2), [SI8O1.58] (OSI(CH3)2-CH2CL), [SI10O1.510] (OSI(CH3)2-CH2CL) [J].
AGASKAR, PA .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1989, 197 :423-INOR
[40]   MULTINUCLEAR NMR-SPECTRA OF (CH3)3SNCH2SN(CH3)3, (CH3)3SNCH2GE(CH3)3, (CH3)3SNCH2SI(CH3)3, (CH3)3SNCH2C(CH3)3 AND SOME HALOGENATED DERIVATIVES [J].
HAWKER, DW ;
WELLS, PR .
ORGANIC MAGNETIC RESONANCE, 1984, 22 (05) :280-285