Significant Effects of Excitonic Coupling and Charge Transfer on the Circular Dichroism Spectrum of Photosynthetic Light-Harvesting I Complex.

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
Rio Tsuji, Kazuhiro J Fujimoto, Naho Hiwatashi, Zheng-Yu Wang-Otomo, Takeshi Yanai
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引用次数: 0

Abstract

Spectral properties of light-harvesting (LH) complexes are key to understanding excitation-energy transfer in photosynthesis. This study examines the physicochemical factors that shape the circular dichroism (CD) spectrum of LH1 in Rhodospirillum rubrum. Calculations using four computational models reveal that intermolecular electronic interactions, particularly excitonic coupling, primarily determine the LH1 CD spectrum shape, while charge transfer effects contribute significantly to the redshift of the peaks. Another finding is that the LH1-specific spectrum shape arises from excitonic coupling extending over 12 bacteriochlorophyll (BChl) a molecules. Further computational analysis additionally identified an anticlockwise rotation of the transition dipole moments of the BChl a assembly as a contributing factor. Our results demonstrate how slight variations in intermolecular orientation influence CD spectrum shape, offering insight into the mechanisms governing the optical properties of light-harvesting antennas. Our computational approach advances the systematic study of CD spectrum shapes associated with chromophore aggregation.

激子耦合和电荷转移对光合收光I配合物圆二色光谱的显著影响。
光收集(LH)配合物的光谱特性是理解光合作用中激发-能量转移的关键。本研究探讨了形成红红螺旋藻LH1圆二色性(CD)光谱的理化因素。利用四种计算模型的计算表明,分子间的电子相互作用,特别是激子耦合,主要决定了LH1 CD光谱的形状,而电荷转移效应对峰的红移有重要影响。另一个发现是lh1特有的光谱形状是由延伸到12个细菌叶绿素(BChl) a分子的激子偶联引起的。进一步的计算分析还确定了BChl a组装的过渡偶极矩的逆时针旋转是一个贡献因素。我们的研究结果证明了分子间取向的微小变化如何影响CD光谱形状,从而深入了解了控制光收集天线光学特性的机制。我们的计算方法推进了与发色团聚集相关的CD光谱形状的系统研究。
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
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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