Effect of the Donor/Acceptor Size on the Rate of Photo-Induced Electron Transfer

Photochem Pub Date : 2022-11-30 DOI:10.3390/photochem2040059
N. Tkachenko
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引用次数: 1

Abstract

The photo-induced electron transfer has been under intensive investigation for a few decades already, and a good understanding of the reaction was developed based on thorough study of the molecular donor–acceptor (DA) system. The recent shift to hybrid DA systems opens the question of transferring the knowledge to analyze and design these new materials. One of the apparent differences is the size increase of the donor or acceptor entities. The electronic wave functions of larger entities occupy a larger volume, but since these are still one-electron wave functions, their amplitudes are lower. A simple analysis proposed here demonstrates that this leads to roughly inverse third power dependence of the electron transfer rate constant on the donor or acceptor size, kET∝R−3. This dependence can be observed upon switching from molecular to quantum dot donor in DA systems with a fullerene acceptor.
供体/受体尺寸对光致电子转移速率的影响
几十年来,人们对光致电子转移进行了深入的研究,在对分子供体-受体(DA)体系深入研究的基础上,人们对这一反应有了更深入的了解。最近转向混合数据分析系统打开了转移知识来分析和设计这些新材料的问题。其中一个明显的区别是供体或受体实体的规模增加。较大实体的电子波函数占据较大的体积,但由于它们仍然是单电子波函数,因此它们的振幅较低。本文提出的一个简单分析表明,这导致电子转移速率常数与供体或受体尺寸(kET∝R−3)大致成逆的三次方依赖关系。在具有富勒烯受体的DA系统中,这种依赖关系可以在从分子到量子点供体的切换中观察到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
0.00%
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