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物理有机方法在有机金属反应机理研究中的应用。

Application of physical organic methods to the investigation of organometallic reaction mechanisms.

作者信息

Blum Suzanne A, Tan Kian L, Bergman Robert G

机构信息

Center for New Directions in Organic Synthesis, Department of Chemistry, University of California, Berkeley 94720, USA.

出版信息

J Org Chem. 2003 May 30;68(11):4127-37. doi: 10.1021/jo034198s.

Abstract

For the past 75 years, physical organic chemistry has been the foundation for the elucidation of mechanisms, and the understanding of structure/activity relationships, in organic chemistry. The rational design of experiments and the critical analysis of data have been the hallmarks of this field. In this Perspective, we revisit some of the studies carried out during the past 30 years in which our group has used the tools of physical organic chemistry to investigate the mechanisms of a variety of organometallic reactions. The Perspective covers a broad spectrum of metal-mediated reactions including organic reductions, alkene, carbon monoxide and nitric oxide migratory insertion reactions, C-H bond activation, and the reactions of metal-heteroatom bonds with organic molecules. These studies, along with similar ones carried out in other groups, have demonstrated that the principles and methods of physical organic chemistry have adapted well to the study of organometallic reaction mechanisms. The understanding obtained in this way has aided the development of useful metal-mediated reactions in a wide range of areas, especially in industrial catalysis and in applications to problems in organic synthesis.

摘要

在过去的75年里,物理有机化学一直是阐明有机化学机理以及理解结构/活性关系的基础。合理设计实验和批判性分析数据一直是该领域的标志。在这篇展望文章中,我们回顾了过去30年里我们团队开展的一些研究,其中我们运用物理有机化学工具来研究各种有机金属反应的机理。这篇展望涵盖了广泛的金属介导反应,包括有机还原反应、烯烃、一氧化碳和一氧化氮的迁移插入反应、C-H键活化以及金属-杂原子键与有机分子的反应。这些研究,以及其他团队开展的类似研究,都表明物理有机化学的原理和方法非常适合用于研究有机金属反应机理。通过这种方式获得的认识有助于在广泛领域中开发有用的金属介导反应,尤其是在工业催化以及有机合成问题的应用方面。

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