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首页> 外文期刊>Electrochimica Acta >Micro- and nanotopographies for photoelectrochemical energy conversion. II: Photoelectrocatalysis - Classical and advanced systems
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Micro- and nanotopographies for photoelectrochemical energy conversion. II: Photoelectrocatalysis - Classical and advanced systems

机译:用于光电化学能量转换的微形貌和纳米形貌。 II:光电催化-经典和先进的系统

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The present trends on water photolysis are shortly reviewed. For application in monolithically integrated structures, photoelectrocatalytically active half cell developments with p-Si are described. Using the concept of nanoemitter minority carrier harvesting, it is shown that the introduction of traces of noble metal catalysts that allow collection of light-induced carriers does not result in cost or scarcity limitations. The issue of charge transfer through an interfacial oxide and ballistic electron injection into the electrolyte vs. thermalization is discussed. The experimental data shows that the nanoemitter system can sustain the high current densities resulting from injected light-induced excess carriers from the semiconductor at low overvoltages. Limitations of planar systems with Si are discussed and possible improvements are outlined. First tests of Si rod-like microstructures are presented and the influence of localized surface plasmon excitation on light-induced H_2 evolution with p-Si is investigated.
机译:简短回顾了水光解的当前趋势。为了用于单片集成结构中,描述了具有p-Si的光电催化活性半电池开发。使用纳米发射体少数载流子收获的概念,表明引入痕量的贵金属催化剂可以收集光诱导的载流子,不会造成成本或稀缺性的限制。讨论了通过界面氧化物和弹道电子注入电解质与热化之间的电荷转移问题。实验数据表明,纳米发射极系统可以在低过压下维持由半导体注入的光诱导的多余载流子产生的高电流密度。讨论了具有Si的平面系统的局限性,并概述了可能的改进。提出了硅棒状微结构的首次测试,并研究了局部表面等离子体激元激发对p-Si光诱导H_2演化的影响。

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