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量子化学描述光合作用系统的吸收特性和激发态过程。

Quantum chemical description of absorption properties and excited-state processes in photosynthetic systems.

机构信息

Institute for Physical and Theoretical Chemistry, Technical University Braunschweig, Braunschweig, Germany.

出版信息

Chemphyschem. 2012 Feb;13(2):386-425. doi: 10.1002/cphc.201100408. Epub 2011 Nov 7.

Abstract

The theoretical description of the initial steps in photosynthesis has gained increasing importance over the past few years. This is caused by more and more structural data becoming available for light-harvesting complexes and reaction centers which form the basis for atomistic calculations and by the progress made in the development of first-principles methods for excited electronic states of large molecules. In this Review, we discuss the advantages and pitfalls of theoretical methods applicable to photosynthetic pigments. Besides methodological aspects of excited-state electronic-structure methods, studies on chlorophyll-type and carotenoid-like molecules are discussed. We also address the concepts of exciton coupling and excitation-energy transfer (EET) and compare the different theoretical methods for the calculation of EET coupling constants. Applications to photosynthetic light-harvesting complexes and reaction centers based on such models are also analyzed.

摘要

在过去的几年中,光合作用初始步骤的理论描述变得越来越重要。这是由于越来越多的结构数据可用于光捕获复合物和反应中心,这些复合物和反应中心为原子计算提供了基础,并且在开发用于大分子激发电子态的第一性原理方法方面也取得了进展。在这篇综述中,我们讨论了适用于光合色素的理论方法的优缺点。除了激发态电子结构方法的方法学方面,还讨论了叶绿素型和类胡萝卜素型分子的研究。我们还讨论了激子耦合和激发能量转移(EET)的概念,并比较了计算 EET 耦合常数的不同理论方法。还分析了基于此类模型的光合光捕获复合物和反应中心的应用。

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