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首页> 外文期刊>Journal of Materials Science >Electrodeposition of cuprous oxide on a porous copper framework for an improved photoelectrochemical performance
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Electrodeposition of cuprous oxide on a porous copper framework for an improved photoelectrochemical performance

机译:氧化亚铜电沉积在多孔铜框架上,改善光电化学性能

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摘要

Photoelectrochemical (PEC) water splitting can be an efficient and economically feasible alternative for hydrogen production if easily processed photoelectrodes made of inexpensive and abundant materials are employed. Here, we present the preparation of porous Cu2O photocathodes with good PEC performance using solely inexpensive electrodeposition methods. Firstly, porous Cu structures with delicate pore networks were deposited on flat Cu substrates employing hydrogen-bubble-assisted Cu deposition. In a second electrodeposition step, the porous Cu structures were mechanically reinforced and subsequently detached from the substrates to obtain free-standing porous frameworks. In a third and final step, photoactive Cu2O films were electrode-posited. The PEC water splitting performance in 0.5 M Na2SO4 (pH similar to 6) shows that these photocathodes have photocurrents of up to -2.25 mA cm(-2) at 0 V versus RHE while maintaining a low dark current. In contrast, the Cu2O deposited on a flat Cu sample showed photocurrents only up to -1.25 mA cm(-2). This performance increase results from the significantly higher reactive surface area while maintaining a thin and homogeneous Cu2O layer with small grain sizes and therefore higher hole concentrations as determined by Mott-Schottky analysis. The free-standing porous Cu2O samples show a direct optical transmittance of 23% (lambda = 400-800 nm) and can therefore be used in tandem structures with a photoanode in full PEC cells.
机译:如果使用廉价且丰富的材料制成易于加工的光电极,光电化学(PEC)水裂解是一种高效且经济可行的制氢替代方法。在这里,我们介绍了使用廉价的电沉积方法制备具有良好PEC性能的多孔Cu2O光电阴极。首先,采用氢气泡辅助铜沉积技术,在平坦的铜衬底上沉积了具有精细孔隙网络的多孔铜结构。在第二个电沉积步骤中,对多孔铜结构进行机械增强,然后将其从基底上分离,以获得独立的多孔框架。在第三个也是最后一个步骤中,将光活性Cu2O薄膜置于电极上。PEC在0.5 M Na2SO4(pH类似于6)中的水分解性能表明,这些光电阴极在0 V和RHE下的光电流高达-2.25 mA cm(-2),同时保持较低的暗电流。相比之下,沉积在平坦铜样品上的Cu2O显示的光电流仅高达-1.25 mA-cm(-2)。这种性能的提高是由于反应表面积显著增加,同时保持了晶粒尺寸较小的薄而均匀的Cu2O层,因此根据莫特-肖特基分析确定了更高的空穴浓度。独立多孔Cu2O样品的直接光学透射率为23%(λ=400-800 nm),因此可以在全PEC电池中与光阳极串联使用。

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  • 来源
    《Journal of Materials Science》 |2021年第20期|共15页
  • 作者单位

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Fundamentals Energy Mat Grp Gustav Kirchhoff Str 5 D-98693 Ilmenau Germany;

    Tech Univ Ilmenau Electrochem &

    Electroplating Grp Gustav Kirchhoff Str 6 D-98693 Ilmenau Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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