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ChemoenzymaticDynamic Kinetic Resolution: A PowerfulTool for the Preparation of Enantiomerically Pure Alcohols and Amines

机译:化学酶动态动力学分辨率:功能强大对映体纯醇和胺的制备工具

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摘要

Chemoenzymatic dynamic kinetic resolution (DKR) constitutes a convenient and efficient method to access enantiomerically pure alcohol and amine derivatives. This Perspective highlights the work carried out within this field during the past two decades and pinpoints important avenues for future research. First, the Perspective will summarize the more developed area of alcohol DKR, by delineating the way from the earliest proof-of-concept protocols to the current state-of-the-art systems that allows for the highly efficient and selective preparation of a wide range of enantiomerically pure alcohol derivatives. Thereafter, the Perspective will focus on the more challenging DKR of amines, by presenting the currently available homogeneous and heterogeneous methods and their respective limitations. In these two parts, significant attention will be dedicated to the design of efficient racemization methods as an important means of developing milder DKR protocols. In the final part of the Perspective, a brief overview of the research that has been devoted toward improving enzymes as biocatalysts ispresented.
机译:化学酶动力学动力学拆分(DKR)构成了访问对映体纯净的醇和胺衍生物的便捷有效方法。该观点重点介绍了过去二十年来在该领域内开展的工作,并指出了未来研究的重要途径。首先,《透视图》将概述从最早的概念验证协议到当前最先进的系统的方法,该技术将使酒精DKR的开发领域更加广泛,从而可以高效,选择性地制备多种对映体纯的醇衍生物。此后,“透视图”将通过介绍当前可用的均相和异相方法及其各自的局限性,集中于更具挑战性的胺的DKR。在这两部分中,将特别关注高效消旋方法的设计,这是开发较温和的DKR协议的重要手段。在《展望》的最后部分中,简要概述了致力于改进酶作为生物催化剂的研究。提出了。

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