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钌-膦-二胺配合物的电子效应对选择氢化C=C和C=O键的影响
引用本文:张愚,余晓军,余长斌,夏雨青,李瑞祥,陈华,李贤均.钌-膦-二胺配合物的电子效应对选择氢化C=C和C=O键的影响[J].中国化学,2009,27(5):937-943.
作者姓名:张愚  余晓军  余长斌  夏雨青  李瑞祥  陈华  李贤均
作者单位:四川大学化学学院绿色化学与技术教育部重点实验室, 四川成都610064
摘    要:本文合成了一系列新的钌-膦-二胺配合物,并通过核磁和元素分析表征确定了配合物的组分和结构。文中进一步考察了这些配合物用于苄叉丙酮以及苯乙酮和苯乙烯组成的混合物的选择催化加氢,发现随着膦和二胺配体中配位原子碱性的增强,羰基加氢的活性和选择性大幅提高;反之,配位原子碱性减弱不仅降低反应活性,羰基加氢的选择性也大幅降低。基于这些配合物的电子效应对催化氢化性质的影响,我们提出了在钌-膦-二胺体系中的氢活化机理。

关 键 词:钌配合物    二胺  苄叉丙酮  氢化
收稿时间:2008-6-6
修稿时间:2008-12-17

Effect of Electronic Factor in Ru‐phosphine‐diamine Complexes on Selective Hydrogenation of CC and CO Bonds
Yu ZHANG,Xiaojun YU,Changbin YU,Yuqing XIA,Ruixiang LI,Hua CHEN,Xianjun LI.Effect of Electronic Factor in Ru‐phosphine‐diamine Complexes on Selective Hydrogenation of CC and CO Bonds[J].Chinese Journal of Chemistry,2009,27(5):937-943.
Authors:Yu ZHANG  Xiaojun YU  Changbin YU  Yuqing XIA  Ruixiang LI  Hua CHEN  Xianjun LI
Institution:1. Key Laboratory of Green Chemistry and Technology, College of Chemistry, Sichuan University, Chengdu, Sichuan 610064, China;2. Tel./Fax: 0086‐028‐85412904
Abstract:A series of ruthenium complexes bearing different phosphines and diamines were synthesized and their components and structures were characterized by NMR spectra and elemental analyses. The catalytic properties of these complexes for the hydrogenation of benzylideneacetone and the mixture of acetophenone and styrene were investigated. The results showed that the basicity increase of phosphine or diamine dramatically facilitates the hydrogenation activity and selectivity to CO double bond. On the contrary, the basicity decrease of phosphine or diamine not only slows down the catalytic activity, but also significantly suppresses the hydrogenation selectivity to CO double bond. Based on the effect of electron factors of these complexes on the hydrogenation activity and selectivity of benzylideneacetone and the mixture of styrene and acetophenone, the activation mechanism of dihydrogen in ruthenium‐phosphine‐diamine system was proposed.
Keywords:ruthenium complex  rhosphine  riamine  benzylideneacetone  hydrogenation
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