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Photochemical charge transfer observed in nanoscale hydrogen evolving photocatalysts using surface photovoltage spectroscopy

机译:使用表面光电压光谱法在纳米级析氢光催化剂中观察到光化学电荷转移

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摘要

The application of inorganic nanostructures for solar water splitting is currently limited by our understanding of photochemical charge transfer on the nanoscale, where space charge layers are less effective for carrier separation. Here we employ surface photovoltage spectroscopy to measure the internal photovoltages in single crystalline platinum/ruthenium-modified Rh-doped SrTiO3 nanocrystals for the first time. Voltages of -0.88 V and -1.13 V are found between the absorber and the Ru and Pt cocatalysts, respectively, and a voltage of -1.48 V for a Rh:SrTiO3 film on an Au substrate. This shows that the Pt and Ru cocatalysts not only improve the redox kinetics but also aid charge separation in the absorber. Voltages of +0.4 V, +0.6 V, and +1.2 V are found for hole injection into KI, K-4[Fe(CN)(6)], and methanol, respectively, and a voltage of -0.7 V for electron injection into K-3[Fe(CN)(6)]. These voltages correlate well with the photocatalytic performance of the catalyst; they are influenced by the built-in potentials of the donor-acceptor configurations, the physical separation of donors and acceptors, and the reversibility of the redox reaction. The photovoltage data also allowed the identification of a photosynthetic system for hydrogen evolution (80 mmol g(-1) h(-1)) under visible light illumination (>400 nm) from 0.05 M aqueous K-4[Fe(CN)(6)].
机译:目前,无机纳米结构在太阳能水分解中的应用受到我们对纳米级光化学电荷转移的理解的限制,其中空间电荷层对载流子分离的有效性较低。在这里,我们首次使用表面光电压光谱法来测量单晶铂/钌改性的Rh掺杂SrTiO3纳米晶体的内部光电压。在吸收剂与Ru和Pt助催化剂之间分别发现-0.88 V和-1.13 V的电压,在Au衬底上的Rh:SrTiO3膜的电压为-1.48V。这表明Pt和Ru助催化剂不仅改善了氧化还原动力学,而且还有助于吸收剂中的电荷分离。发现分别将空穴注入KI,K-4 [Fe(CN)(6)]和甲醇的电压为+0.4 V,+ 0.6 V和+1.2 V,对于电子注入的电压为-0.7 V变成K-3 [Fe(CN)(6)]。这些电压与催化剂的光催化性能很好地相关。它们受施主-受主构型的内置电势,施主与受主的物理分离以及氧化还原反应的可逆性的影响。光电压数据还允许从0.05 M水性K-4 [Fe(CN)(v)在可见光照射下(> 400 nm)鉴定出用于氢析出的光合系统(80 mmol g(-1)h(-1))( 6)]。

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  • 来源
    《Energy & environmental science》 |2015年第10期|2970-2976|共7页
  • 作者

    Wang J.; Zhao J.; Osterloh F. E.;

  • 作者单位

    Univ Calif Davis, Dept Chem, Davis, CA 95616 USA;

    Univ Calif Davis, Dept Chem, Davis, CA 95616 USA;

    Univ Calif Davis, Dept Chem, Davis, CA 95616 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 23:11:40

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