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Electrochemical synthesis of titania nanostructural arrays and their surface modification for enhanced photoelectrochemical hydrogen production

机译:二氧化钛纳米结构阵列的电化学合成及其表面修饰,可增强光电化学产氢

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We synthesized nanostructured TiO2 photoanodes by electrochemical anodization with different geometries and investigated the effects of the electrode surface structure on the generation of hydrogen. The surface of the nanotubular photoanodes was then treated with helium plasma to remove contaminants and reduce the recombination sites. This was followed by nitrogen plasma treatment for surface doping with N-2. Surface treatment created oxygen vacancies and induced substitutional doping of N-2 at the titania surface. The results showed that the combination of novel surface structures coupled with plasma-assisted surface modification improves the photocurrent density of TiO2 photoanodes.
机译:我们通过不同几何形状的电化学阳极氧化合成了纳米结构的TiO2光阳极,并研究了电极表面结构对氢生成的影响。然后用氦等离子体处理纳米管光阳极的表面,以去除污染物并减少重组位点。接着进行氮等离子体处理,以用N-2进行表面掺杂。表面处理产生氧空位,并在二氧化钛表面诱导N-2的替代掺杂。结果表明,新颖的表面结构与等离子体辅助的表面改性相结合,可提高TiO2光阳极的光电流密度。

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