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从好奇心到应用:关于无机光化学的个人观点

From curiosity to applications. A personal perspective on inorganic photochemistry.

作者信息

Ford Peter C

机构信息

Department of Chemistry and Biochemistry , University of California , Santa Barbara , CA 93110-9510 , USA . Email:

出版信息

Chem Sci. 2016 May 1;7(5):2964-2986. doi: 10.1039/c6sc00188b. Epub 2016 Feb 12.

Abstract

Over the past several decades, the photochemistry and photophysics of transition metal compounds has blossomed from a relatively niche topic to a major research theme. Applications arising from the elucidation of the fundamental principles defining this field now range from probing the rates and mechanisms of small molecules with metalloproteins to light activated molecular machines. Offered here is a personal perspective of metal complex photochemistry drawn from this author's long involvement with this field. Several examples are described. Topics include characterizing key excited states and tuning these to modify chemical reactivity and/or photoluminescence properties, as well as using photoreactions as an entry to reactive intermediates relevant to homogeneous catalysts. This is followed by discussions of applying these concepts to developing precursors and precursor-antenna conjugates for the photochemical delivery of small molecule bioregulators to physiological targets.

摘要

在过去几十年里,过渡金属化合物的光化学和光物理已从一个相对小众的话题发展成为一个主要的研究主题。通过阐明定义该领域的基本原理而产生的应用如今涵盖了从探究金属蛋白与小分子的反应速率和机制到光激活分子机器等多个方面。本文是作者基于长期投身该领域所形成的对金属配合物光化学的个人观点。文中描述了几个例子。主题包括表征关键激发态并对其进行调控以改变化学反应性和/或光致发光特性,以及利用光反应作为通向与均相催化剂相关的反应中间体的途径。接下来讨论了如何将这些概念应用于开发前体以及前体 - 天线共轭物,用于将小分子生物调节剂光化学递送至生理靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bb5/6003602/2bad8dfe4a34/c6sc00188b-f1.jpg

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