Synergistic Catalysis by Brønsted Acid/Carbodicarbene Mimicking Frustrated Lewis Pair‐Like Reactivity
作者:Yi‐Chen Chan、Yuna Bai、Wen‐Ching Chen、Hsing‐Yin Chen、Chen‐Yu Li、Ying‐Yann Wu、Mei‐Chun Tseng、Glenn P. A. Yap、Lili Zhao、Hsuan‐Ying Chen、Tiow‐Gan Ong
DOI:10.1002/anie.202107127
日期:2021.9
Carbodicarbene (CDC), unique carbenic entities bearing two lone pairs of electrons are well-known for their strong Lewis basicity. We demonstrate herein, upon introducing a weak Brønstedacid benzyl alcohol (BnOH) as a co-modulator, CDC is remolded into a Frustrated Lewis Pair (FLP)-like reactivity. DFT calculation and experimental evidence show BnOH loosely interacting with the binding pocket of CDC
Pd-catalyzed selective hydrosilylation of aryl ketones and aldehydes
作者:Pandurang V. Chouthaiwale、Varun Rawat、Arumugam Sudalai
DOI:10.1016/j.tetlet.2011.10.155
日期:2012.1
Pd salts in combination with triethylsilane as hydride source and DMF as solvent has been found to be excellent catalytic combination that selectively reduces aryl ketones and aldehydes under mild conditions to afford triethylsilyloxy compounds in excellent yields. Product selectivity to the respective benzyl alcohols can however be achieved when the reaction was performed in DMF/H2O (4:1) as solvent system. (C) 2011 Elsevier Ltd. All rights reserved.
A Convenient and Efficient Rhenium-Catalyzed Hydrosilylation of Ketones and Aldehydes
作者:Hailin Dong、Heinz Berke
DOI:10.1002/adsc.200900246
日期:2009.8
The easily available rhenium(I) complex [Re(CH3CN)3Br2(NO)] catalyzes the homogeneous hydrosilylation of a great variety of organic carbonyl compounds (ketones and aldehydes). The reaction is quite sensitive to the solvent applied. Chlorobenzene was found to be superior over all the other solvents used. Various aliphatic and aromatic silanes were tested. Excellent yields were achieved at 85 °C in chlorobenzene
易于获得的rh(I)络合物[Re(CH 3 CN)3 Br 2(NO)]催化多种有机羰基化合物(酮和醛)的均相氢化硅烷化。该反应对所施加的溶剂非常敏感。发现氯苯优于所用的所有其他溶剂。测试了各种脂肪族和芳香族硅烷。使用三乙基硅烷,在85°C的氯苯中,获得了优异的收率,该反应的TOF值高达495 h -1。提出了可能的氢化硅烷化反应机理。