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Kinetics of light-driven oxygen evolution at a-Fe_20_3 electrodes

机译:A-FE_20_3电极在光驱动氧气演变动力学

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The kinetics of light-driven oxygen evolution at polycrystalline a-Fe_2O_3 layers prepared by aerosol-assisted chemical vapour deposition has been studied using intensity modulated photocurrent spectroscopy (IMPS). Analysis of the frequency-dependent IMPS response gives information about the competition between the 4-electron oxidation of water by photogenerated holes and losses due to electron-hole recombination via surface states. The very slow kinetics of oxygen evolution indicates the presence of a kinetic bottleneck in the overall process. Surface treatment of the a-Fe_2O_3 with dilute cobalt nitrate solution leads to a remarkable improvement in the photocurrent response, but contrary to expectation, the results of this study show that this is not due to catalysis of hole transfer but is instead the consequence of almost complete suppression of surface recombination.
机译:使用强度调制的光电流光谱(Imms)研究了通过气溶胶辅助化学气相沉积制备的多晶A-Fe_2O_3层的光驱动氧量的动力学。频率依赖性IMPS响应的分析提供了关于通过光生孔通过表面状态通过电子空穴重组引起的光生孔和损耗的竞争的信息。氧气进化的非常慢的动力学表明整个过程中存在动力学瓶颈。用稀钴硝酸盐溶液对A-Fe_2O_3的表面处理导致光电流反应显着改善,但与预期相反,这项研究的结果表明这不是由于孔转移的催化而是差不多的结果完全抑制表面重组。

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