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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Highly efficient photocatalyst based on all oxides WO3/Cu2O heterojunction for photoelectrochemical water splitting
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Highly efficient photocatalyst based on all oxides WO3/Cu2O heterojunction for photoelectrochemical water splitting

机译:基于所有氧化物WO3 / Cu2O异质结的高效光催化剂,用于光电化学水分解

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We present a novel all oxides semiconductor WO3/Cu2O heterojunction photoelectrode applied in photoelectrochemical water splitting. Different amount of Cu2O was loaded onto WO3 NRs by controlling the electrodeposition time and the amount influence on the photoelectrocatalytic activity of the different samples has been researched. This all oxides structure exhibits a remarkably high photoelectrocatalytic performance with a significant improved photocurrent density of 1.37 mA cm(-2) was measured at a bias voltage of 0.8 V vs RHE, which was about 3.51 times higher than that of pristine WO3 NRs. This amazing PEC performance due to the broader light absorption spectrum, the enhanced photogenerated charge carriers transfer efficiency and the suppressive electron-hole recombination rate. The research results can demonstrate a promising way for designing all oxide semiconductor heterojunction structure so that it can improve photoelectrocatalytic efficiency. Moreover, these results also suggest that the WO3 NRs/Cu2O arrays heterojunction structure has a great potential application for efficient PEC water splitting devices. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们提出了一种新颖的全氧化物半导体WO3 / Cu2O异质结光电极在光电化学水分解中的应用。通过控制电沉积时间将不同量的Cu2O加载到WO3 NRs上,并研究了其量对不同样品的光电催化活性的影响。在0.8 V vs. RHE的偏压下测得的1.39 mA cm(-2)的光电流密度显着提高,该所有氧化物结构均显示出极高的光电催化性能,比原始WO3 NR高约3.51倍。由于具有更宽的光吸收谱,增强的光生电荷载流子传输效率和抑制性的电子-空穴复合率,PEC的性能令人赞叹。研究结果证明了设计所有氧化物半导体异质结结构的有前途的方法,从而可以提高光电催化效率。此外,这些结果还表明,WO3 NRs / Cu2O阵列异质结结构对于有效的PEC分水装置具有巨大的潜在应用。 (C)2016 Elsevier B.V.保留所有权利。

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