首页> 外文期刊>Journal of physical chemistry letters >Torsional Dynamics and Intramolecular Charge Transfer in the S-2 (1(1) B-u(+)) Excited State of Peridinin: A Mechanism for Enhanced Mid Visible Light Harvesting
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Torsional Dynamics and Intramolecular Charge Transfer in the S-2 (1(1) B-u(+)) Excited State of Peridinin: A Mechanism for Enhanced Mid Visible Light Harvesting

机译:Peridinin的S-2(1(1)B-u(+))激发态中的扭转动力学和分子内电荷转移:增强的中可见光收集的机制。

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摘要

Of the carotenoids known in photosynthetic organisms, peridinin exhibits one of the highest quantum efficiencies for excitation energy transfer to chlorophyll (Chl) a acceptors. The mechanism for this enhanced performance involves an order-of magnitude slowing of the S-2 (1(1)B(u)(+)) -> S-1 (2(1)A(g)(-)) nonradiative decay pathway compared to carotenoids lacking carbonyl substitution. Using femtosecond transient grating spectroscopy with optical heterodyne detection, we have obtained the first evidence that the nonradiative decay of the S-2 state of peridinin is promoted by large-amplitude torsional motions. The decay of an intermediate state termed S-x, which we assign to a twisted form of the S-2 state, is substantially slowed by solvent friction in peridinin due to its intramolecular charge transfer (ICT) character.
机译:在光合作用生物中已知的类胡萝卜素中,peridinin表现出将激发能转移至叶绿素(Chl)a受体的最高量子效率之一。增强性能的机制涉及S-2(1(1)B(u)(+))-> S-1(2(1)A(g)(-))非辐射的数量级减慢衰变途径与缺乏羰基取代的类胡萝卜素相比。使用飞秒瞬态光栅光谱技术和光学外差检测,我们获得了第一个证据,即大振幅扭转运动促进了peridinin S-2状态的非辐射衰减。由于peridinin的分子内电荷转移(ICT)特性,溶剂苦参素中的摩擦大大降低了称为S-x的中间状态的衰减,我们将其称为S-2状态的扭曲形式。

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