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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Energy Transfer Pathways in Light-Harvesting Complexes of Purple Bacteria as Revealed by Global Kinetic Analysis of Two-Dimensional Transient Spectra
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Energy Transfer Pathways in Light-Harvesting Complexes of Purple Bacteria as Revealed by Global Kinetic Analysis of Two-Dimensional Transient Spectra

机译:二维瞬态谱的整体动力学分析揭示了紫色细菌光收集复合物中的能量传递途径

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摘要

Excited state dynamics in LH2 complexes of two purple bacterial species were studied by broad-band two-dimensional electronic spectroscopy. The optical response was measured in the 500-600 nm spectral region on the 0-400 fs time scale. Global target analysis of two-dimensional (2D) transient spectra revealed the main energy transfer pathways between carotenoid S2, 1B_u~- and S1 states and bacteriochlorophyll Q_x state. Global analysis ascertained the evolutionary and vibration-associated spectra, which also indicated the presence of a higher-lying vibrational level in the carotenoid S1 state. The estimation of the spectral overlap between the 1B_u~- state and the G_x state indicated a significant contribution of the 1B_u~- state to the overall S2-to-Q_x excitation energy transfer.
机译:通过宽带二维电子光谱研究了两种紫色细菌的LH2配合物的激发态动力学。在0-400 fs的时间刻度上在500-600 nm光谱区域中测量了光学响应。二维(2D)瞬态谱的全局目标分析揭示了类胡萝卜素S2、1B_u〜-和S1状态与细菌叶绿素Q_x状态之间的主要能量转移途径。全局分析确定了演化谱和振动相关谱,这也表明在类胡萝卜素S1状态下存在较高的振动水平。 1B_u--状态和G_x状态之间的光谱重叠估计表明,1B_u--状态对整个S2-Q-x激发能量转移有重要贡献。

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