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Understanding the Charge Carrier Dynamics of Metal@TiO2 Core-Shell Nanorods in Photocatalytic Hydrogen Generation

机译:了解光催化氢发电中金属@ TiO2核心壳纳米棒的电荷载体动力学

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摘要

The fast recombination of photogenerated electrons and holes in the pure TiO2 leads to a low photocatalytic efficiency in hydrogen generation or solar energy conversion. Noble metal nanoparticles have been used to combine with TiO2 for effective photocatalysis. Herein, Au@Ag@TiO2 nanorods (NRs) with core-shell structure have been prepared by hydrolysis the precursor of titanium in acid environment. UV light-driven H-2 generation rate of Au@Ag@TiO2 samples demonstrated 14 times enhancement compared to P25 TiO2 at the same experimental conditions. The improved photocatalytic performance was due to the charge transfer from the conduction band of excited TiO2 to Au@Ag NRs leading to effective separation of electron-hole pairs. This mechanism has been proved by transient absorption spectroscopy and photo-electrochemical (PEC) measurements. The time resolved photocurrents of P25 TiO2 NPs is ~ 13 times higher that of Au@Ag@TiO2, indicating that a fraction of the photogenerated electrons of TiO2 driven by UV light transfer to Au@Ag nanocores instead of transporting entirely to the ITO substrates. The ultrafast transient absorption and pump-probe measurements demonstrated a faster decay in Au@Ag@TiO2 NRs compared to pure TiO2 system, indicating that the photogenerated electron-hole recombination in TiO2 is substantially suppressed by Au@Ag@TiO2 NRs attributed to the effective trapping of the photogenerated electrons by the Au@Ag cores. Graphic Au@Ag@TiO2 nanocomposites with core-shell structure have been prepared and its UV light-driven H-2 generation rate has been demonstrated 14 times enhancement compared to P25 TiO2 at the same experimental conditions. The improved photocatalytic performance was due to the charge transfer, which has been proved by photocurrent measurement and the ultrafast transient absorption and pump-probe measurements.
机译:光生电子和纯TiO 2中的孔的快速重组导致氢气产生或太阳能转化中的低光催化效率。贵金属纳米颗粒已被用于与TiO2结合以进行有效的光催化。这里,通过水解钛酸环境中的钛的前体制备具有核 - 壳结构的Au @ Ag @ TiO2纳米棒(NRS)。与P25 TiO 2相同的实验条件相比,Au @ Ag @ TiO2样品的UV光驱动的H-2生成率展示了14倍增强。改善的光催化性能是由于从激发TiO2的导电带传递到Au @ Agn的电荷转移,导致电子孔对的有效分离。通过瞬态吸收光谱和光电化学(PEC)测量证明了该机制。 P25 TiO2 NPS的时间分辨光电流是Au @ Ag @ TiO2的〜13倍,表明通过UV光转移到Au @ Ag纳米载体驱动的TiO 2的光生电子的一部分,而不是完全传输到ITO基板。与纯TiO 2系统相比,超快瞬态吸收和泵探针测量在Au @ Ag @ TiO2 NR中显示了更快的衰减,表明TiO 2中的光发化电子 - 空穴重组基本上被Au @ Ag @ TiO2 NRS归因于有效Au @ Ag核心通过Au @ Ag核心捕获光静电电子。已经制备了具有核 - 壳结构的TiO2纳米复合材料,并且其UV光驱动的H-2生成率已经证明了与P25 TiO2相同的实验条件相比的增强14倍。改善的光催化性能是由于电荷转移,通过光电流测量和超快瞬态吸收和泵探针测量来证明。

著录项

  • 来源
    《Catalysis Letters》 |2020年第7期|共8页
  • 作者单位

    Shijiazhuang Tiedao Univ Sch Mat Sci &

    Engn Hebei Prov Key Lab Traff Engn Mat Shijiazhuang 050043 Hebei Peoples R China;

    Shijiazhuang Tiedao Univ Sch Mat Sci &

    Engn Hebei Prov Key Lab Traff Engn Mat Shijiazhuang 050043 Hebei Peoples R China;

    Globalfoundries Singapore Pte Ltd Singapore 738406 Singapore;

    Shijiazhuang Tiedao Univ Sch Mat Sci &

    Engn Hebei Prov Key Lab Traff Engn Mat Shijiazhuang 050043 Hebei Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化;
  • 关键词

    Hydrogen generation; Photocurrent; Ultrafast dynamics; Metal nanoparticles; Charge transfer;

    机译:氢气产生;光电流;超快动力学;金属纳米粒子;电荷转移;

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