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首页> 外文期刊>The Journal of Chemical Physics >Energy transfer dynamics in trimers and aggregates of light-harvesting complex II probed by 2D electronic spectroscopy
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Energy transfer dynamics in trimers and aggregates of light-harvesting complex II probed by 2D electronic spectroscopy

机译:二维电子光谱探测三聚体和集光复合体II聚集体中的能量转移动力学

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The pathways and dynamics of excitation energy transfer between the chlorophyll (Chl) domains in solubilized trimeric and aggregated light-harvesting complex II (LHCII) are examined using two-dimensional electronic spectroscopy (2DES). The LHCII trimers and aggregates exhibit the unquenched and quenched excitonic states of Chl a, respectively. 2DES allows direct correlation of excitation and emission energies of coupled states over population time delays, hence enabling mapping of the energy flow between Chls. By the excitation of the entire Chl b Q(y) band, energy transfer from Chl b to Chl a states is monitored in the LHCII trimers and aggregates. Global analysis of the two-dimensional (2D) spectra reveals that energy transfer from Chl b to Chl a occurs on fast and slow time scales of 240-270 fs and 2.8 ps for both forms of LHCII. 2D decay-associated spectra resulting from the global analysis identify the correlation between Chl states involved in the energy transfer and decay at a given lifetime. The contribution of singlet-singlet annihilation on the kinetics of Chl energy transfer and decay is also modelled and discussed. The results show a marked change in the energy transfer kinetics in the time range of a few picoseconds. Owing to slow energy equilibration processes, long-lived intermediate Chl a states are present in solubilized trimers, while in aggregates, the population decay of these excited states is significantly accelerated, suggesting that, overall, the energy transfer within the LHCII complexes is faster in the aggregated state. (C) 2015 AIP Publishing LLC.
机译:使用二维电子光谱法(2DES)检查了溶解的三聚体和聚集的光捕获复合体II(LHCII)中叶绿素(Chl)域之间的激发能转移途径和动力学。 LHCII三聚体和聚集体分别表现出Chla的未淬灭和淬灭的激子态。 2DES允许在填充时间延迟上耦合状态的激发和发射能量直接相关,因此可以映射Chls之间的能量流。通过激发整个Chlb b Q(y)波段,可以在LHCII三聚体和聚集体中监测从Chlb b到Chla状态的能量转移。二维(2D)光谱的全局分析表明,对于两种形式的LHCII,从Chlb到Chla的能量转移均发生在240-270 fs和2.8 ps的快速和慢速时间范围内。整体分析得出的二维衰变相关光谱确定了在给定寿命中参与能量转移和衰变的Chl状态之间的相关性。还对单重态an灭对Chl能量传递和衰减动力学的贡献进行了建模和讨论。结果表明,在几皮秒的时间范围内,能量传递动力学发生了显着变化。由于能量平衡过程缓慢,可溶解的三聚体中存在长寿命的中间Chla状态,而在聚集体中,这些激发态的种群衰减显着加快,这表明,总体而言,LHCII配合物中的能量传递更快。汇总状态。 (C)2015 AIP Publishing LLC。

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