首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Au/TiO2 Photo(electro)catalysis: The Role of the Au Cocatalyst in Photoelectrochemical Water Splitting and Photocatalytic H2 Evolution
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Au/TiO2 Photo(electro)catalysis: The Role of the Au Cocatalyst in Photoelectrochemical Water Splitting and Photocatalytic H2 Evolution

机译:Au / TiO2照片(电)催化:Au Cocatalyst在光电化学水分裂和光催化H2进化中的作用

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Photoelectrochemical water oxidation and photo-catalytic H2 evolution on planar nanocrystalline Au/TiO2 catalyst film electrodes were studied by combined electrochemistry and online mass spectrometry, allowing for the detection and quantification of the volatile reaction products O2 and H2, and thus, by comparison with the photocurrent, to determine selectivities and to map out contributions from side reactions. The catalysts were prepared by a photodeposition method and deposited on conductive glass substrates, and measurements were performed under defined mass transport conditions in a photoelectrochemical thin-layer flow cell. The role of Au nanoparticles as cocatalysts in these reactions was explored by varying the Au loading and the light intensity, respectively. On the basis of these data, it is demonstrated that the Au nanoparticles affect the above reactions in different ways, by (i) catalyzing the recombination of photogenerated holes and electrons as well as parasitic side reactions (O2 reduction) in the photoelectrochemical water oxidation reaction, by (ii) affecting the selectivity in that reaction, and by (iii) improving the separation of photogenerated electrons and holes by catalyzing the reaction with sacrificial agents such as methanol, thus enhancing the photocatalytic H2 evolution reaction.
机译:光电化学水氧化和光催化H2进化上平面纳米金/二氧化钛催化剂膜电极通过合并电化学和在线质谱研究,允许挥发性的反应产物O2和H2,并由此检测和定量,通过与比较光电流,以确定选择性和绘制出由副反应的贡献。该催化剂通过一个光化学淀积方法制备和沉积在导电玻璃基板,并测量了在光电化学薄层流动室限定的质量传递条件下进行。 Au构成的纳米颗粒的作用如在这些反应中的助催化剂是通过分别改变在Au装载和光强度,探讨。在这些数据的基础上,它被证明了的Au纳米颗粒以不同方式影响上述反应中,通过(i)催化光生空穴和电子的光电化学水氧化反应再结合以及寄生副反应(O 2还原) ,由(ⅱ)影响在该反应的选择性,并通过(iii)通过用催化剂牺牲如甲醇反应,从而提高了光催化H 2放出反应改善光生电子和空穴的分离。

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