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Singlet-singlet annihilation kinetics in aggregates and trimers of LHCII.

机译:LHCII的聚集体和三聚体中的单重态单态let灭动力学。

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摘要

Singlet-singlet annihilation experiments have been performed on trimeric and aggregated light-harvesting complex II (LHCII) using picosecond spectroscopy to study spatial equilibration times in LHCII preparations, complementing the large amount of data on spectral equilibration available in literature. The annihilation kinetics for trimers can well be described by a statistical approach, and an annihilation rate of (24 ps)(-1) is obtained. In contrast, the annihilation kinetics for aggregates can well be described by a kinetic approach over many hundreds of picoseconds, and it is shown that there is no clear distinction between inter- and intratrimer transfer of excitation energy. With this approach, an annihilation rate of (16 ps)(-1) is obtained after normalization of the annihilation rate per trimer. It is shown that the spatial equilibration in trimeric LHCII between chlorophyll a molecules occurs on a time scale that is an order of magnitude longer than in Photosystem I-core, after correcting for the different number of chlorophyll a molecules in both systems. The slow transfer in LHCII is possibly an important factor in determining excitation trapping in Photosystem II, because it contributes significantly to the overall trapping time.
机译:已经使用皮秒光谱法对三聚体和聚集的光捕获复合物II(LHCII)进行了单重态单态an灭实验,以研究LHCII制剂中的空间平衡时间,补充了文献中可获得的大量光谱平衡数据。三聚体的an灭动力学可以通过统计学方法很好地描述,并且an灭速率为(24 ps)(-1)。相反,聚集体的an灭动力学可以通过动力学方法很好地描述数百皮秒,并且表明三聚体间和三聚体之间的激发能传递之间没有明显的区别。使用此方法,在将每个三聚体的rate灭率归一化之后,可获得(16 ps)(-1)的an灭率。结果表明,在校正两个系统中不同数量的叶绿素a分子后,叶绿素a分子之间的三聚体LHCII中的空间平衡发生的时间尺度比光系统I核中的时间尺度长一个数量级。 LHCII中的缓慢转移可能是确定光系统II中激发诱捕的重要因素,因为它对整个诱捕时间有很大贡献。

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