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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Role of TiO2 Surface Passivation on Improving the Performance of p-InP Photocathodes
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Role of TiO2 Surface Passivation on Improving the Performance of p-InP Photocathodes

机译:TiO2表面钝化对提高p-InP光电阴极性能的作用

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The role of TiO2 thin films deposited by atomic layer deposition on p-InP photocathodes used for solar hydrogen generation was examined. It was found that, in addition to its previously reported corrosion protection role, the large valence band offset between TiO2 and InP creates an energy barrier for holes reaching the surface. Also, the conduction band of TiO2 is well-aligned with that of InP. The combination of these two effects creates an electron-selective contact with low interface recombination. Under simulated solar illumination in HClO4 aqueous electrolyte, an onset potential of >800 mV vs RHE was achieved, which is the highest yet reported for an InP photocathode.
机译:考察了通过原子层沉积在用于太阳能制氢的p-InP光电阴极上沉积的TiO2薄膜的作用。人们发现,除了先前报道的腐蚀保护作用之外,TiO2和InP之间的大价带偏移还为到达表面的空穴创造了能垒。此外,TiO2的导带与InP的导带良好对齐。这两种效应的结合产生了界面选择性低的电子选择性接触。在HClO4水溶液中模拟太阳光照下,相对RHE的起始电势达到了800 mV,这是InP光电阴极的最高记录。

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