Marciniec Bogdan
Department of Organometallic Chemistry, Faculty of Chemistry, Adam Mickiewicz University, Grunwaldzka 6, 60-780 Poznan, Poland.
Acc Chem Res. 2007 Oct;40(10):943-52. doi: 10.1021/ar700116f.
In the Account given herein, it has been shown that silylative coupling of olefins, well-recognized as a new catalytic route for the activation of double bond C-H bond of olefins and double bond C-Si bond of vinylsilicon compounds with ethylene elimination, can be extended over both other vinylmetalloid derivatives (double bond C-E) (where E = Ge, B, and others) as well as the activation of triple bond C-H, double bond C aryl-H, and -O-H bond of alcohols and silanols. This general transformation is catalyzed by transition-metal complexes (mainly Ru and Rh) containing or initiating TM-H and/or TM-E bonds (inorganometallics). This new general catalytic route for the activation of double bond C-H and triple bond C-H as well as double bond C-E bonds called metallative coupling or trans-metalation (cross-coupling, ring-closing, and polycondensation) constitutes an efficient method (complementary to metathesis) for stereo- and regioselective synthesis of a variety of molecular and macromolecular compounds of vinyl-E (E = Si, B, and Ge) and ethynyl-E (E = Si and Ge) functionality, also potent organometallic reagents for efficient synthesis of highly pi-conjugated organic compounds. The mechanisms of the catalysis of this deethenative metalation have been supported by equimolar reactions of TM-H and/or TM-E with initial substances and reactions with deuterium-labeled reagents.
在本文所述内容中,已经表明烯烃的硅氢化偶联,这一被公认为用于活化烯烃双键C-H键和乙烯基硅化合物双键C-Si键并消除乙烯的新催化途径,可扩展至其他乙烯基金属类衍生物(双键C-E)(其中E = Ge、B等)以及醇类和硅醇类的三键C-H、双键C-芳基-H和-O-H键的活化。这种一般转化由含有或引发TM-H和/或TM-E键(无机金属化合物)的过渡金属配合物(主要是Ru和Rh)催化。这种用于活化双键C-H、三键C-H以及双键C-E键的新的一般催化途径,称为金属化偶联或转金属化(交叉偶联、闭环和缩聚),构成了一种有效的方法(与复分解互补),用于立体和区域选择性合成各种具有乙烯基-E(E = Si、B和Ge)和乙炔基-E(E = Si和Ge)官能团的分子和大分子化合物,也是用于高效合成高度π共轭有机化合物的有效有机金属试剂。这种脱乙烯基金属化催化的机理已通过TM-H和/或TM-E与初始物质的等摩尔反应以及与氘标记试剂的反应得到支持。