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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Correlation of Car S1 → Chl with Chl → Car S1 Energy Transfer Supports the Excitonic Model in Quenched Light Harvesting Complex II
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Correlation of Car S1 → Chl with Chl → Car S1 Energy Transfer Supports the Excitonic Model in Quenched Light Harvesting Complex II

机译:Car S1→Chl与Chl→Car S1的能量传递支持猝灭光捕获复合体II中的激子模型

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摘要

Recently, excitonic carotenoid-chlorophyll interactions have been proposed as a simple but effective model for the down-regulation of photosynthesis in plants. The model was proposed on the basis of quenching-correlated electronic carotenoid-chlorophyll interactions (Car S1 → Chl) determined by Car S1 two-photon excitation and red-shifted absorption bands. However, if excitonic interactions are indeed responsible for this effect, a simultaneous correlation of quenching with increased energy transfer in the opposite direction, Chl Q_y → Car S1. should be observed. Here we present a systematic study on the correlation of Car S1 → Chl and Chl → Car S1 energy transfer with the occurrence of red-shifted bands and quenching in isolated LHC1I. We found a direct correlation between all four phenomena, supporting our conclusion that excitonic Car S1-Chl interactions provide low-lying states serving as energy traps and dissipative valves for excess excitation energy.
机译:最近,激子类胡萝卜素-叶绿素的相互作用已被提出为一种简单但有效的植物光合作用下调的模型。该模型是基于由汽车S1双光子激发和红移吸收带确定的与猝灭相关的电子类胡萝卜素-叶绿素相互作用(汽车S1→Chl)建立的。然而,如果激子相互作用确实是造成这种效应的原因,则淬灭与在相反方向(Chl Q_y→Car S1)上增加的能量传递同时相关。应该遵守。在这里,我们对Car S1→Chl和Chl→Car S1的能量转移与红移带的发生以及孤立的LHC1I中的猝灭之间的相关性进行系统的研究。我们发现这四个现象之间存在直接相关性,支持了我们的结论,即激子Car S1-Chl相互作用提供了低洼状态,从而充当了能量陷阱和多余的激发能量的耗散阀。

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