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Metal-Enhanced Fluorescence of Chlorophylls in Light-Harvesting Complexes Coupled to Silver Nanowires

机译:叶绿素在银纳米线耦合的光收集复合物中的金属增强荧光。

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摘要

We investigate metal-enhanced fluorescence of peridinin-chlorophyll protein coupled to silver nanowires using optical microscopy combined with spectrally and time-resolved fluorescence techniques. In particular we study two different sample geometries: first, in which the light-harvesting complexes are deposited onto silver nanowires, and second, where solution of both nanostructures are mixed prior deposition on a substrate. The results indicate that for the peridinin-chlorophyll complexes placed in the vicinity of the silver nanowires we observe higher intensities of fluorescence emission as compared to the reference sample, where no nanowires are present. Enhancement factors estimated for the sample where the light-harvesting complexes are mixed together with the silver nanowires prior deposition on a substrate are generally larger in comparison to the other geometry of a hybrid nanostructure. While fluorescence spectra are identical both in terms of overall shape and maximum wavelength for peridinin-chlorophyll-protein complexes both isolated and coupled to metallic nanostructures, we conclude that interaction with plasmon excitations in the latter remains neutral to the functionality of the biological system. Fluorescence transients measured for the PCP complexes coupled to the silver nanowires indicate shortening of the fluorescence lifetime pointing towards modifications of radiative rate due to plasmonic interactions. Our results can be applied for developing ways to plasmonically control the light-harvesting capability of photosynthetic complexes.
机译:我们使用光学显微镜结合光谱和时间分辨荧光技术,研究了与银纳米线偶联的peridinin-叶绿素蛋白的金属增强荧光。特别是,我们研究了两种不同的样品几何形状:首先,将光收集络合物沉积在银纳米线上,其次,将两种纳米结构的溶液混合后再沉积在基板上。结果表明,与不存在纳米线的参比样品相比,对于放置在银纳米线附近的苦豆素-叶绿素复合物,我们观察到更高的荧光发射强度。与混合纳米结构的其他几何形状相比,对于将光捕获络合物与银纳米线混合在一起然后沉积在基板上的样品,估计的增强因子通常更大。尽管荧光素光谱在分离和偶联至金属纳米结构的全皮素-叶绿素-蛋白质复合物的整体形状和最大波长方面均相同,但我们得出的结论是,后者中与等离激元激发的相互作用对生物系统的功能仍然保持中性。对偶联至银纳米线的PCP复合物测得的荧光瞬变表明,荧光寿命缩短,指向由于等离子体相互作用引起的辐射速率的变化。我们的结果可用于开发方法,以等离子体方式控制光合复合物的光捕获能力。

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