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Catalysis, kinetics and mechanisms of organo-iridium enantioselective hydrogenation-reduction

机译:催化的动力学机制organo-iridium拆分hydrogenation-reduction

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摘要

The synthesis of chiral molecules is of great importance to the pharmaceutical, agrochemical, flavour and fragrance industries. The use of organo-iridium complexes has gained a reputation for its great utility in key enantioselective synthetic procedures. Prime examples include the catalytic reduction of carbonyls and imines; iridium-catalysed allylic substitution and catalysed enantioselective hydrogenation of unsaturated carboxylic acids. Important aspects in these processes are the reaction conditions such as the catalyst loading, metal-ion ligands, the substrate, solvent and the reaction times-all of which can affect the degree of enantioselectivity. Understanding the mechanisms of these hydrogenation/reduction reactions through kinetic and other related studies makes a vital contribution to improving catalytic efficiency.
机译:手性分子的合成是伟大的重视医药,农药,味道和芳香产业。organo-iridium复合物已经赢得了声誉对其关键拆分的效用合成过程。催化还原羰基和亚胺;iridium-catalysed烯丙基的替换,催化拆分加氢不饱和羧酸。在这些过程中反应条件如催化剂装载时,金属离子配体,底物、溶剂和反应乘以所有的影响的程度选择性。这些加氢/还原反应通过动力学和其他相关研究进行提高催化的重要贡献效率。

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