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管状激子模型在绿硫光合细菌的叶绿素 c 天线中的应用。

Tubular exciton models for BChl c antennae in chlorosomes from green photosynthetic bacteria.

机构信息

Ames Laboratory-USDOE, Iowa State University, 50011, Ames, IA, USA.

出版信息

Photosynth Res. 1996 Jun;48(3):367-77. doi: 10.1007/BF00029469.

Abstract

Exciton calculations on tubular pigment aggregates similar to recently proposed models for BChl c/d/e antennae in light-harvesting chlorosomes from green photosynthetic bacteria yield electronic absorption spectra that are super-impositions of linear J-aggregate spectra. While the electronic spectroscopy of such antennae differs considerably from that of linear J-aggregates, tubular exciton models (which may be viewed as cross-coupled J-aggregates) may be constructed to yield spectra that resemble that of the BChl c antenna in the green bacterium Chloroflexus aurantiacus. Highly symmetric tubular models yield absorption spectra with dipole strength distributions essentially identical to that of a J-aggregate; strong symmetry-breaking is needed to simulate the absorption spectrum of the BChl c antenna.

摘要

管状色素聚集体的激子计算类似于最近提出的用于从绿色光合细菌的光捕获叶绿素 c/d/e 天线的 BChl c/d/e 天线的模型,其产生的电子吸收光谱是线性 J-聚集体光谱的叠加。虽然此类天线的电子光谱与线性 J-聚集体的光谱有很大的不同,但管状激子模型(可以看作是交叉耦合的 J-聚集体)可以构建,以产生类似于绿色细菌 Chloroflexus aurantiacus 中的 BChl c 天线的光谱。高度对称的管状模型产生的吸收光谱具有与 J-聚集体基本相同的偶极矩强度分布;需要强烈的对称性破坏来模拟 BChl c 天线的吸收光谱。

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