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首页> 外文期刊>Scientific reports. >Plasmon-Enhanced Light Harvesting of Chlorophylls on Near-Percolating Silver Films via One-Photon Anti-Stokes Upconversion
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Plasmon-Enhanced Light Harvesting of Chlorophylls on Near-Percolating Silver Films via One-Photon Anti-Stokes Upconversion

机译:通过单光子反斯托克斯上转换在近渗银膜上进行等离子增强叶绿素的光收集

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摘要

There exists a wealth of means of efficient utilization of solar energy in nature, with photosynthesis of chlorophylls as a prime example. Separately, artificially structured plasmonic materials are versatile in light harvesting and energy conversion. Using a simple and scalable design of near-percolating silver nanostructures, we demonstrate that the light-harvesting efficiency of chlorophylls can be drastically enhanced by tuning the plasmon frequency of the constituent silver nanoparticles to coincide with the maximal photon flux of sunlight. In particular, we show that the photon upconversion efficiency can be readily enhanced by over 20 folds, with the room-temperature fluorescence quantum yield increased by a factor of 2.63. The underlying mechanism for the upconversion enhancement is attributed to a one-electron-per-photon anti-Stokes process, involving absorption of a characteristic phonon mode of the chlorophylls. These findings suggest that chlorophylls can serve as molecular building blocks for high-efficiency light harvesting and solar energy conversion.
机译:自然界中存在大量有效利用太阳能的手段,其中叶绿素的光合作用就是一个很好的例子。另外,人工结构的等离激元材料在光收集和能量转换方面用途广泛。使用近渗银纳米结构的简单且可扩展的设计,我们证明了通过调节组成银纳米粒子的等离激元频率与太阳光的最大光子通量一致,可以大大提高叶绿素的集光效率。特别是,我们显示光子上转换效率可以轻松提高20倍以上,而室温荧光量子产率提高了2.63倍。上转换增强的基本机制归因于单电子单光子反斯托克斯过程,该过程涉及吸收叶绿素的特征声子模式。这些发现表明,叶绿素可以作为高效采光和太阳能转化的分子构建基块。

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