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首页> 外文期刊>International journal of hydrogen energy >Cadmium sulfide Co-catalyst reveals the crystallinity impact of nickel oxide photocathode in photoelectrochemical water splitting
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Cadmium sulfide Co-catalyst reveals the crystallinity impact of nickel oxide photocathode in photoelectrochemical water splitting

机译:硫化镉助催化剂揭示了光电化学水分解中氧化镍光阴极的结晶度影响

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Nickel oxide (NiO) with p-type semiconducting behaviour was prepared via a direct anodisation of nickel (Ni) foam followed by calcination treatment. This method offers a direct photoelectrode synthesis without the intermediate step using a pre-synthesised NiO powder. NiO photocathodes with modulated crystallinity were prepared under elevated calcination temperatures. The beneficial effect of having higher crystallinity in generating higher cathodic photocurrent became obvious in the aid of cadmium sulfide (CdS) deposition. It was found that CdS can promote the excited charge transportation of NiO towards water reduction, thus revealing the effect of NiO crystallinity modulation. The role of CdS as co-catalyst rather than a photosensitiser can be useful in the future design of photoelectrodes. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过对镍(Ni)泡沫进行直接阳极氧化,然后进行煅烧处理,可以制备具有p型半导体行为的氧化镍(NiO)。该方法无需使用预先合成的NiO粉末的中间步骤即可直接进行光电极合成。在升高的煅烧温度下制备具有调节的结晶度的NiO光电阴极。在硫化镉(CdS)沉积的帮助下,具有更高结晶度以产生更高的阴极光电流的有益效果变得显而易见。发现CdS可以促进NiO的激发电荷向减水方向迁移,从而揭示了NiO结晶度调节的作用。 CdS作为助催化剂而不是光敏剂的作用在光电极的未来设计中可能有用。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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