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首页> 外文期刊>Journal of the American Chemical Society >Weil-Defined Rhodium-Gallium Catalytic Sites in a Metal-Organic Framework: Promoter-Controlled Selectivity in Alkyne Semihydrogenation to E-Alkenes
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Weil-Defined Rhodium-Gallium Catalytic Sites in a Metal-Organic Framework: Promoter-Controlled Selectivity in Alkyne Semihydrogenation to E-Alkenes

机译:金属有机骨架中的Weil定义的铑-镓催化位点:炔烃半氢化成E-烯烃时促进剂控制的选择性

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摘要

Promoters are ubiquitous in industrial heterogeneous catalysts. The wider roles of promoters in accelerating catalysis and/or controlling selectivity are, however, not well understood. A model system has been developed where a heterobimetallic active site comprising an active metal (Rh) and a promoter ion (Ga) is preassembled and delivered onto a metal-organic framework (MOF) support, NU-1000. The Rh Ga sites in NU-1000 selectively catalyze the hydrogenation of acyclic alkynes to E-alkenes. The overall stereoselectivity is complementary to the well-known Lindlar's catalyst, which generates Z-alkenes. The role of the Ga in promoting this unusual selectivity is evidenced by the lack of semihydrogenation selectivity when Ga is absent and only Rh is present in the active site.
机译:助催化剂在工业多相催化剂中无处不在。然而,对于促进剂在加速催化和/或控制选择性中的广泛作用还没有很好地理解。已经开发了模型系统,其中预先组装了包含活性金属(Rh)和促进剂离子(Ga)的异双金属活性位点,并将其递送到金属-有机骨架(MOF)载体NU-1000上。 NU-1000中的Rh Ga位点选择性催化无环炔烃加氢成E-烯烃。整体立体选择性与著名的Lindlar催化剂互补,后者可生成Z-烯烃。当不存在Ga且活性位点中仅存在Rh时,缺乏半氢化选择性证明了Ga在促进这种异常选择性中的作用。

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