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Supramolecular light-harvesting antenna system by co-aggregates of zinc (bacterio)chlorophyll-a derivatives with biomimetic chlorosomal self-assemblies

机译:通过锌(Bacterio)叶绿素 - 一种具有仿生氯纤维素自组装的衍生物的共聚物的超分子光收集天线系统

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摘要

Light-harvesting (LH) antennas are one of the most important apparatuses for photosynthetic organisms to utilize solar energy. The main LH apparatuses in photosynthetic green bacteria are chlorosomes containing baseplate proteins. A chlorosome possesses a large number of bacteriochlorophyll(BChl)-c-f molecules. These BChls are chemically programmed pigments for J-aggregation, which self-assemble in a hydrophobic environment. The BChl-c-f self-assemblies in a chlorosome are primary energy donors, which absorb sunlight, migrate the excitation energy, and transfer it to energy acceptor BChl-a pigments in a baseplate protein. To develop such chlorosomal LH antenna in artificial systems, self-assemblies of synthetic BChl-d analogs and BChl-a derivatives have been used for the energy donors and acceptors, respectively. In this study, we report the co-aggregation of zinc chlorophyll derivatives with chlorosomal self-assemblies. The present system showed singlet excitation energy transfer from energetically donating chlorosomal self-assemblies to energetically accepting zinc chlorophyll derivatives in the solution and solid states.
机译:光收获(LH)天线是利用太阳能的光合生物最重要的装置之一。光合绿色细菌中的主LH设备是含有底板蛋白的氯体。氯体具有大量的菌氯苯基(BCHL)-C-F分子。这些BCHL是用于J-聚集的化学编程颜料,其在疏水环境中自组装。氯体组中的BCH1-C-F自组装是吸收阳光,迁移激发能量的主要能量供体,并将其转移到底板蛋白中的能量受体BCHL-A颜料。为了在人造系统中开发这种氯运动LH天线,分别用于能量供体和受体的合成BCHL-D类似物和BCHL-A衍生物的自组装。在这项研究中,我们报告了锌叶绿素衍生物与氯体自身组件的共聚合。本系统显示出单线型激发能量从能量上含有氯体自组装的能量转移,以便在溶液和固态中能够在溶液和固态中能够高举叶绿素衍生物。

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