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首页> 外文期刊>Journal of nanoscience and nanotechnology >Resonant Localization, Enhancement, and Polarization of Optical Fields in Nano-Scale Interface Regions for Photo-Catalytic Applications
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Resonant Localization, Enhancement, and Polarization of Optical Fields in Nano-Scale Interface Regions for Photo-Catalytic Applications

机译:用于光催化应用的纳米级界面区域中光场的共振定位,增强和极化

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摘要

We report results of theoretical simulations of optical field enhancement in a system consisting of spherical and hemispherical noble metal nanoparticles on a smooth titania surface, which is a model system relevant to applications in photo-catalysis and solar energy harvesting. Simulations conducted using Finite-Difference Time-Domain (FDTD) technique reveal presence of resonant optical extinction bands at visible wavelengths, whose optical scattering is weak, but the associated localization and intensity enhancement of optical near-field are significant. For hemispheres, the field is strongly localized at the metal-substrate interface, where intensity enhancement of up to 10~4 times is reached. Moreover, the field is predominantly polarized along the normal to the substrate. These findings indicate potential of the hemisphere-substrate system for applications relying on optically promoted charge transport through the metal-substrate interface, such as photochemical reactions and light-to-current conversion. The results of theoretical analysis are compared with reported experimental data on photo-catalytic reactions.
机译:我们报告了在光滑的二氧化钛表面上由球形和半球形贵金属纳米粒子组成的系统中光场增强的理论模拟结果,该系统是与光催化和太阳能收集中的应用相关的模型系统。使用有限差分时域(FDTD)技术进行的仿真表明,在可见波长处存在共振光学消光带,其光散射较弱,但相关的局域性和光学近场的强度增强非常重要。对于半球,该场强烈地局限在金属-基底界面,其强度增强高达10〜4倍。而且,该电场主要沿着基板的法线极化。这些发现表明,半球-基质系统在依赖于光促进的电荷通过金属-基质界面传输的应用中具有潜力,例如光化学反应和光电流转换。理论分析的结果与报道的光催化反应实验数据进行了比较。

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