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利用光致变色开关进行电子和能量转移调制

Electron and energy transfer modulation with photochromic switches.

作者信息

Raymo Francisco M, Tomasulo Massimiliano

机构信息

Center for Supramolecular Science, Department of Chemistry, University of Miami, 1301 Memorial Drive, FL 33146-0431, USA.

出版信息

Chem Soc Rev. 2005 Apr;34(4):327-36. doi: 10.1039/b400387j. Epub 2005 Feb 11.

Abstract

This tutorial review illustrates how work on the reversible interconversion between the colorless and colored forms of photochromic compounds can be exploited to modulate electron and energy transfer processes. Indeed, a photochrome can be designed to accept electrons or energy from a complementary donor in one of its two states only. Alternatively, the photoinduced transformations associated with a photochromic switch can be engineered to control the relative orientation and distance of donor-acceptor pairs. If either the donor or the acceptor is fluorescent, the photoregulated transfer of energy or electrons results in the modulation of the emission intensity. Thus, these fascinating molecular and supramolecular systems can advance the basic understanding of electron and energy transfer processes, while leading to viable operating principles to control light with light.

摘要

本教程综述阐述了如何利用光致变色化合物无色和有色形式之间的可逆相互转化来调节电子和能量转移过程。实际上,可以设计一种光致变色材料,使其仅在两种状态之一中从互补供体接受电子或能量。或者,可以设计与光致变色开关相关的光诱导转变,以控制供体 - 受体对的相对取向和距离。如果供体或受体是荧光性的,那么能量或电子的光调节转移会导致发射强度的调制。因此,这些引人入胜的分子和超分子体系可以促进对电子和能量转移过程的基本理解,同时引出用光控制光的可行操作原理。

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