Experimental and Computational Studies of the Ruthenium-Catalyzed Hydrosilylation of Alkynes: Mechanistic Insights into the Regio- and Stereoselective Formation of Vinylsilanes
作者:Ruili Gao、Dale R. Pahls、Thomas R. Cundari、Chae S. Yi
DOI:10.1021/om501019j
日期:2014.12.8
regio- and stereoselective hydrosilylation of alkynes to form vinylsilane products. (Z)-Vinylsilane products were selectively formed for sterically nondemanding terminalalkynes, while (E)-vinylsilane products resulted from sterically demanding terminalalkynes. Kinetic data were obtained from the hydrosilylation of phenylacetylene. The phosphine inhibition study showed an uncompetitive Michaelis–Menten
Highly Selective Dehydrogenative Silylation of Alkenes Catalyzed by Rhenium Complexes
作者:Yanfeng Jiang、Olivier Blacque、Thomas Fox、Christian M. Frech、Heinz Berke
DOI:10.1002/chem.200802019
日期:2009.2.16
chemicals: Rhenium(I) complexes of type [ReBr2(L)(NO)(PR3)2] (L=H2 (1), CH3CN (2), ethylene (3); R=iPr (a), cyclohexyl (b)) proved to be suitable catalyst precursors for the highlyselectivedehydrogenativesilylation of alkenes. Two types of rhenium(I) hydride species, [ReBrH(NO)(PR3)2] (4) and [ReBr(η2‐CH2CHR1)H(NO)(PR3)2] (5), were found in the [ReBr2(L)(NO)(PR3)2]‐catalyzeddehydrogenative silylation
选择化学药品:[ReBr 2(L)(NO)(PR 3)2 ]类型的R(I)配合物(L = H 2(1),CH 3 CN(2),乙烯(3); R = i Pr (a),环己基(b))被证明是用于烯烃的高度选择性脱氢甲硅烷基化的合适催化剂前体。两种类型的铼(I)氢化物种,[ReBrH(NO)(PR 3)2 ](4)和[ReBr(η 2 -CH 2 CHR 1)H(NO)(PR 3)2 ](5),是在[ReBr 2(L)(NO)(PR 3)2 ]催化的烯烃脱氢甲硅烷基化反应中发现的。
Selective hydrosilylation of alkynes with a nanoporous gold catalyst
The hydrosilylation of acetylenic compounds proceeded smoothly in the presence of a reusable nanoporous goldcatalyst under mild conditions and the β-(E)-cis-addition products were obtained in good to high yields regio- and stereoselectively.
Rhodium Nanoflowers Stabilized by a Nitrogen-Rich PEG-Tagged Substrate as Recyclable Catalyst for the Stereoselective Hydrosilylation of Internal Alkynes
fully characterized. The flower‐like Rh NPs are effective and recyclablecatalysts for the stereoselective hydrosilylation of challenging internal alkynes and diynes, affording the (E)‐vinylsilanes in quantitative yields for a wide range of substrates. The insolubility of the nanocatalyst in diethyl ether allows its easy separation and recycling.
Dehydrogenative silylation of terminal alkynes by iridium catalyst
作者:Rie Shimizu、Takamasa Fuchikami
DOI:10.1016/s0040-4039(99)02174-7
日期:2000.2
Dehydrogenativesilylation of terminalalkynes with hydrosilanes proceeds in the presence of iridium catalyst to afford the corresponding silylacetylenes. When phenylacetylene and triethylsilane were heated in dry DME in the presence of Ir4(CO)12–PPh3, (2-phenylethynyl)triethylsilane was obtained in 96% yield with little of hydrosilylated products. The present method is applicable for a variety of