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Plasmon induced modifications of the Forster energy transfer in reconstituted peridinin-chlorophyll-protein photosynthetic complex

机译:等离子体诱导的重组peridinin-叶绿素-蛋白光合复合物中Forster能量转移的修饰

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In this work we investigate theoretically the effects imposed by plasmon excitations in spherical metallic nanoparticles (MNPs) on the rate of energy transfer in peridinin-chlorophyll-protein (PCP) complex reconstituted with both chlorophyll a (Chl a) and chlorophyll b (Chi b). This light-harvesting complex is unique since it features efficient energy transfer both from higher-lying Chi b to lower-lying Chi a as well as in the opposite, less energy-favorable direction. The results of calculations show that the Foerster energy transfer rate decreases with a MNP-PCP distance changing from 2 to 14 nm, while the energy transfer from Chi a to Chi b remains less efficient at all distances. We conclude that plasmon excitations allow for controlling the energy transfer between Chls, as well as the excitation distribution between two spectrally distinguishable Chls within the reconstituted PCP complex.
机译:在这项工作中,我们从理论上研究了球形金属纳米颗粒(MNP)中的等离子体激元激发对用叶绿素a(Chl a)和叶绿素b(Chi b )。这种光收集复合体是独特的,因为它具有从较高位置的Chi b到较低位置的Chi a以及沿相反的,对能量不利的方向进行有效的能量传递的功能。计算结果表明,随着MNP-PCP距离从2 nm变为14 nm,Foerster能量转移速率降低,而从Chia到Chib的能量转移在所有距离上均效率较低。我们得出结论,等离激元激发允许控制Chls之间的能量转移,以及重构的PCP复合物中两个光谱可区分的Chls之间的激发分布。

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