Abstract Exploring the mechanism of a pure and amorphous black-blue TiO <ce:inf loc='post'>2</ce:inf>:H thin film as a photoanode in water splitting
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Exploring the mechanism of a pure and amorphous black-blue TiO 2:H thin film as a photoanode in water splitting

机译:探索纯和无定形黑蓝色TiO的机制 2 :H薄膜作为水分裂的光电码

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摘要

AbstractThe use of amorphous disordered surface layers on TiO2nanocrystals prepared by hydrogenated post-treatment has been proven to be an effective approach for enhancing the light absorption and photocatalytic activity of TiO2photoanodes. However, the mechanism underlying the enhanced optical-electrical performance caused by the hydrogenated amorphous shell has still not been fully unveiled. Herein, to explore the mechanism without the effect of the crystalline structure, a pure, amorphous hydrogen-doped TiO2(a-TiO2:H) film was prepared using a magnetron sputtering technique under reactive hydrogen plasma. We propose that the cooperative effects of the extended mid-gap states and valence band tail are responsible for the enhanced visible and near-infrared optical absorption. In addition, the doped H acts as a shallow donor to provide carriers and shift the Fermi level to the conduction band, ultimately accelerating charge transport and transfer at the semiconductor/electrolyte interface. Finally, the photoconversion efficiency of a-TiO2:H was improved one order of magnitude compared to undoped a-TiO2:H. Through the investigation of a-TiO2:H, we gained further insight into black TiO2. In addition, we believe our a-TiO2:H film grown at room temperature opens new opportunities for a broad range of applications, including PEC water splitting, supercapacitors, dye-sensitized solar cells, and perovskite solar cells.
机译:<![cdata [ 抽象 在TiO中使用非晶无序表面层 2 纳米晶体制备的氢化后处理已被证明是增强TiO的光吸收和光催化活性的有效方法 2 光电桥。然而,由氢化无定形壳引起的增强的光学电气性能下面的机制仍未完全揭开。在此,探讨没有结晶结构的效果的机制,纯,无定形氢气掺杂TiO 2 (A-TIO 2 :h)薄膜。我们建议扩展中间隙状态和价带尾部的合作效应负责增强的可见和近红外光学吸收。另外,掺杂的H充当浅供体,以提供载体并将费米水平移入导通带,最终加速电荷传输并在半导体/电解质界面上传递。最后,A-TiO的光电转换效率 2 :h与未掺杂的a-tio :h。通过调查A-TIO 2 :H,我们进一步深入了解黑色TIO 2 。此外,我们相信我们的A-TIO 2 :在室温下种植的H电影为广泛的应用开辟了新的机会,包括PEC水分裂,超级电容器,染料敏化太阳能电池和钙钛矿太阳能电池。

著录项

  • 来源
    《Nano Energy》 |2017年第2017期|共6页
  • 作者单位

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

    Institute of Photoelectronic Thin Film Devices and Technology of Nankai University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Amorphous TiO2:H; Photoanode; Optical absorption theoretical model; Extended mid-gap states; Band tail states;

    机译:无定形TiO2:H;PhotoNode;光学吸收理论模型;延伸中隙状态;带尾部状态;
  • 入库时间 2022-08-20 04:22:13

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