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首页> 外文期刊>Journal of the American Chemical Society >Self-Assembling Light-Harvesting Systems from Synthetically Modified Tobacco Mosaic Virus Coat Proteins
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Self-Assembling Light-Harvesting Systems from Synthetically Modified Tobacco Mosaic Virus Coat Proteins

机译:综合修饰的烟草花叶病毒外壳蛋白的自组装光收集系统

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摘要

A new protein-based approach has been developed for the construction of light-harvesting systems through self-assembly. The building blocks were prepared by attaching fluorescent chromophores to cysteine residues introduced on tobacco mosaic virus coat protein monomers. When placed under the appropriate buffer conditions, these conjugates could be assembled into stacks of disks or into rods that reached hundreds of nanometers in length. Characterization of the system using fluorescence spectroscopy indicated that efficient energy transfer could be achieved from large numbers of donor chromophores to a single acceptor. Energy transfer is proposed to occur through direct donor-acceptor interactions, although degenerate donor-to-donor transfer events are also possible. Three-chromophore systems were also prepared to achieve broad spectrum light collection with over 90% overall efficiency. Through the combination of self-organizing biological structures and synthetic building blocks, a highly tunable new method has emerged for the construction of photovoltaic device components.
机译:已经开发了一种新的基于蛋白质的方法,用于通过自组装来构建光收集系统。通过将荧光发色团附着在烟草花叶病毒外壳蛋白单体上引入的半胱氨酸残基上来制备结构单元。当在适当的缓冲条件下放置时,这些结合物可以组装成成堆的盘状或成棒状,其长度达到数百纳米。使用荧光光谱对系统的表征表明,可以将有效的能量转移从大量的供体生色团转移至单个受体。能量转移被认为是通过直接的供体-受体相互作用而发生的,尽管简并的供体-供体转移事件也是可能的。还准备了三色团系统,以实现总效率超过90%的广谱光收集。通过自组织生物结构和合成构件的结合,出现了一种高度可调节的新方法,用于构造光伏器件组件。

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