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首页> 外文期刊>Nanoscale >Plasmon-induced absorption of blind chlorophylls in photosynthetic proteins assembled on silver nanowires
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Plasmon-induced absorption of blind chlorophylls in photosynthetic proteins assembled on silver nanowires

机译:Plasmon-induced盲目叶绿素吸收在光合蛋白组装银纳米线

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摘要

We demonstrate that controlled assembly of eukaryotic photosystem I with its associated light harvesting antenna complex (PSI-LHCI) on plasmonically active silver nanowires (AgNWs) substantially improves the optical functionality of such a novel biohybrid nanostructure. By comparing fluorescence intensities measured for PSI-LHCI complex randomly oriented on AgNWs and the results obtained for the PSI-LHCI/cytochrome c(553) (cyt c(553)) bioconjugate with AgNWs we conclude that the specific binding of photosynthetic complexes with defined uniform orientation yields selective excitation of a pool of chlorophyll (Chl) molecules that are otherwise almost non-absorbing. This is remarkable, as this study shows for the first time that plasmonic excitations in metallic nanostructures can not only be used to enhance native absorption of photosynthetic pigments, but also - by employing cyt c(553) as the conjugation cofactor - to activate the specific Chl pools as the absorbing sites only when the uniform and well-defined orientation of PSI-LHCI with respect to plasmonic nanostructures is achieved. As absorption of PSI alone is comparatively low, our approach lends itself as an innovative approach to outperform the reported-to-date biohybrid devices with respect to solar energy conversion.
机译:我们证明装配控制真核生物的光系统I相关联光收获天线复杂(PSI-LHCI)plasmonically活跃的银纳米线(AgNWs)大大提高了光学功能这样的一种新颖的合成纳米结构。比较荧光强度测量PSI-LHCI AgNWs和复杂的随机取向获得的结果为PSI-LHCI /细胞色素c (553) (cyt c (553)) bioconjugate AgNWs我们得出具体的绑定光合作用的复合物与统一的定义取向收益率选择性激发的池叶绿素(背影)分子几乎不吸收。研究首次表明,电浆作用在金属纳米结构不能只能用于提高本地的吸收光合色素,而且——通过使用cyt c结合代数余子式- (553)激活特定的背影和吸收池网站只有当统一和明确的取向PSI-LHCI对电浆纳米结构。仅是相对较低,我们的方法借本身作为一个创新的方法来表现迄今报告合成设备对太阳能能量转换。

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