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通过子系统密度泛函理论研究天然光捕获复合物的光物理性质。

Photophysical properties of natural light-harvesting complexes studied by subsystem density functional theory.

作者信息

Neugebauer Johannes

机构信息

Laboratorium für Physikalische Chemie, ETH Zurich, Wolfgang-Pauli-Strasse 10, 8093 Zurich, Switzerland.

出版信息

J Phys Chem B. 2008 Feb 21;112(7):2207-17. doi: 10.1021/jp709956k. Epub 2008 Jan 31.

Abstract

In this study, we investigate the excited states and absorption spectra of a natural light-harvesting system by means of subsystem density functional theory. In systems of this type, both specific interactions of the pigments with surrounding protein side chains as well as excitation energy transfer (EET) couplings resulting from the aggregation behavior of the chromophores modify the photophysical properties of the individual pigment molecules. It is shown that the recently proposed approximate scheme (J. Chem. Phys. 2007, 126, 134116) for coupled excitations within a subsystem approach to time-dependent DFT is capable of describing both effects in a consistent manner, and is efficient enough to study even the large assemblies of chromophores occurring in the light-harvesting complex 2 (LH2) of the purple bacterium Rhodopseudomonas acidophila. A way to extract phenomenological coupling constants as used in model calculations on EET rates is outlined. The resulting EET coupling constants and spectral properties are in reasonable agreement with the available reference data. Possible problems related to the effective exchange-correlation kernel are discussed.

摘要

在本研究中,我们借助子系统密度泛函理论研究了一种天然光捕获系统的激发态和吸收光谱。在这类系统中,色素与周围蛋白质侧链的特定相互作用以及发色团聚集行为导致的激发能量转移(EET)耦合都会改变单个色素分子的光物理性质。结果表明,最近提出的用于子系统方法中耦合激发的近似方案(《化学物理杂志》2007年,第126卷,第134116页)在含时密度泛函理论中能够以一致的方式描述这两种效应,并且效率足够高,甚至能够研究嗜酸红假单胞菌紫细菌的光捕获复合体2(LH2)中出现的大型发色团组装体。概述了一种提取用于EET速率模型计算的唯象耦合常数的方法。所得的EET耦合常数和光谱性质与现有的参考数据合理相符。讨论了与有效交换相关核可能相关的问题。

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