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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The mechanism of enantioselective ketone reduction with Noyori and Noyori-Ikariya bifunctional catalysts
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The mechanism of enantioselective ketone reduction with Noyori and Noyori-Ikariya bifunctional catalysts

机译:Noyori和Noyori-Ikariya双功能催化剂还原对映选择性酮的机理

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The catalytic hydrogenation of prochiral ketones with second and third-row transition metal complexes bearing chelating chiral ligands containing at least one N-H functionality has achieved unparalleled performance, delivering, in the best cases, chiral alcohols with up to 99.9% ee using extremely small catalyst loadings (similar to 10(-5) mol%). Hence the efficacy of this reaction has closely approached that of natural enzymatic systems and the reaction itself has become one of the most efficient artificial catalytic reactions developed to date. This article describes the current level of understanding of the mechanism of enantio-selective hydrogenation and transfer hydrogenation of aromatic ketones with pioneering prototypes of bifunctional catalysts, the Noyori and Noyori-Ikariya complexes. Analysis presented herein expands the concept of "metal-ligand cooperation", redefines the term "cooperative ligand" and introduces "H-/H+ outer-sphere hydrogenation" as a novel paradigm in outer-sphere hydrogenation.
机译:用带有至少一个NH官能团的螯合手性配体的第二和第三行过渡金属配合物催化前手性酮的氢化反应具有无与伦比的性能,在最佳情况下,使用极小的催化剂负载量可提供最高99.9%ee的手性醇(类似于10(-5)mol%)。因此,该反应的功效已经接近天然酶系统的功效,并且反应本身已成为迄今为止开发的最有效的人工催化反应之一。本文介绍了目前对双官能催化剂的先驱原型,Noyori和Noyori-Ikariya配合物对芳族酮的对映选择性氢化和转移氢化机理的了解。本文提出的分析扩展了“金属-配体配合”的概念,重新定义了术语“配合配体”,并引入了“ H- / H +外球氢化”作为外球氢化的新范式。

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