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首页> 外文期刊>Advanced Functional Materials >Surface Plasmonic-Assisted Photocatalysis and Optoelectronic Devices with Noble Metal Nanocrystals: Design, Synthesis, and Applications
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Surface Plasmonic-Assisted Photocatalysis and Optoelectronic Devices with Noble Metal Nanocrystals: Design, Synthesis, and Applications

机译:具有贵金属纳米晶体的表面等离子体辅助光催化和光电器件:设计,合成和应用

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摘要

The surface plasmon resonance (SPR) of noble metals is known to improve the efficiency of various processes and devices. The photocatalytic process is the production of fuels and storage of solar photons in chemical bonds without imposing harmful threats to the environment. Photovoltaics are other devices utilizing solar energy for electrical energy. Similarly, other optoelectronic devices like photodetectors absorb photons and convert it into charges via electron-hole dissociation processes. In contrast, light-emitting optoelectronic devices work based on the phenomenon of charge recombination to produce light. All these devices, however, have efficiency limitations, which impede the application of novel functional materials in these devices. A more direct approach is the utilization of noble metals and their complexes, which significantly enhance the efficiencies of these devices by SPR. This article highlights recent works and applications of noble metals by SPR-enhanced photocatalysis for hydrogen evolution from water, CO2 conversion into useful compounds, and oxidation of hazardous pollutants. In addition, the plasmon-enhancement of optoelectronic devices is summarized. Several possible mechanisms that have been previously reported in the literature are discussed in this work, with particular emphasis on different features of these mechanisms involving devices that are not highlighted and therefore need more attention.
机译:已知贵金属的表面等离子体激元共振(SPR)可提高各种工艺和设备的效率。光催化过程是燃料的生产和以化学键的形式存储太阳光子,而不会对环境造成有害威胁。光伏电池是利用太阳能获取电能的其他设备。同样,其他光电设备(如光电探测器)吸收光子,并通过电子-空穴解离过程将其转换为电荷。相反,发光光电器件基于电荷复合现象产生光。然而,所有这些设备都具有效率限制,这阻碍了在这些设备中新型功能材料的应用。一种更直接的方法是利用贵金属及其络合物,这可以通过SPR显着提高这些设备的效率。本文重点介绍了贵金属通过SPR增强的光催化技术的最新工作和应用,该催化技术可用于从水中放出氢气,将CO2转化为有用的化合物以及有害污染物的氧化。另外,总结了光电器件的等离子体增强。在这项工作中讨论了先前在文献中已经报道过的几种可能的机制,特别强调了这些机制的不同特征,这些特征涉及未突出显示的设备,因此需要更多关注。

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