(PHOSPHINOALKYL)SILYL COMPLEXES .10. FORMATION OF CHELATED BIS[(DIPHENYLPHOSPHINOETHYL)DIORGANOSILYL]PLATINUM(II) COMPLEXES - PRECOORDINATION THROUGH PHOSPHORUS, INTERMEDIACY OF A PLATINUM(IV) DISILYL, AND DIASTEREOISOMERISM AT PLANAR PLATINUM(II) IN CHELATE-ASSISTED HYDROSILYLATION

被引:44
作者
GRUNDY, SL [1 ]
HOLMESSMITH, RD [1 ]
STOBART, SR [1 ]
WILLIAMS, MA [1 ]
机构
[1] UNIV VICTORIA,DEPT CHEM,POB 3055,VICTORIA V8W 3P6,BC,CANADA
关键词
D O I
10.1021/ic00017a021
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Addition or the silane PPh2CH2CH2SiMe2H (chelH, 1a) to Pt(COD)2 (COD = cycloocta-1,5-diene) affords in high yield the cis-bis chelate Pt(chel)2 (2); formation of the same product from Pt(COD)(X)Y (X = Y = Me; X = Me, Y = Cl) has been shown by NMR spectroscopy (H-1, P-31, Pt-195) to proceed via prior coordination of chelH through P to afford Pt(chelH)2(X)(Y) (cis and trans isomers) and through intermediacy of PtH(chel)2Cl (22) in which P trans to Si at Pt(IV) leads to an exceptionally low 2J(Pt-P) = 1084 Hz. Cleavage of Pt-Si bonds in 2 by HCI can bc controlled to give the monochelate species Pt(chel)(chelH)Cl (7), from which chelH is displaced by PMe2Ph, or trans-PtH(PPh2CH2CH2SiMe2Cl)2Cl (9). Products related to 9 result from Pt-Si bond cleavage by I2 or MeI. Using the analogue Pph2CH2CH2SiMe(Ph)H (1c) of 1a, the analogue Pt[PPh2CH2CH2SiMe(Ph)]2 (4) of 2 is obtained as a mixture of meso and racemic diastereomers in which the latter predominates, as is established by its separation and then reaction with optically pure (+)-2-methylbutyl iodide to give two diastereomeric products of Pt-Si bond cleavage as well as by single-crystal X-ray diffraction.
引用
收藏
页码:3333 / 3337
页数:5
相关论文
共 24 条
[22]  
Speier J.L., 1979, ADV ORGANOMET CHE, V17, P407, DOI [10.1016/S0065-3055(08)60328-7, DOI 10.1016/S0065-3055(08)60328-7]
[23]   THE ADDITION OF SILICON HYDRIDES TO OLEFINIC DOUBLE BONDS .2. THE USE OF GROUP-VIII METAL CATALYSTS [J].
SPEIER, JL ;
WEBSTER, JA ;
BARNES, GH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1957, 79 (04) :974-979
[24]  
Stobart S. R., 1990, US Patent, Patent No. [4,950,798, 4950798]