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Dependence of the photoelectrochemical performance of sensitised ZnO on the crystalline orientation in electrodeposited ZnO thin films

机译:ZnO的光电化学性能对电沉积ZnO薄膜晶体取向的影响

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摘要

The influence of the crystal orientation in porous crystalline films of ZnO electrodeposited on the photoelectrochemical characteristics of the films is studied. For differently oriented ZnO thin films following removal of the respective structure-directing agent (SDA) and adsorption of a sensitiser, time-resolved photocurrent measurements, intensity modulated photocurrent spectroscopy (IMPS), intensity modulated photovoltage spectroscopy (IMVS) and current-voltage curves were measured in acetonitrile-based electrolytes containing I3(-)/I- as the redox electrolyte. The crystal orientation has a significant influence on the charge transport across such films and hence is reflected in the observed electrode kinetics. Films originally grown in the presence of, e. g., Coumarin 343 as a SDA, showed a significantly faster response to illumination. Increased electron diffusion coefficients and diffusion lengths were calculated from the results of IMPS and IMVS, caused by a faster electron movement in the films. Implications of these findings on further improvements of sensitised ZnO films prepared by electrochemical deposition are discussed.
机译:研究了电沉积ZnO多孔晶体薄膜中晶体取向对薄膜光电化学特性的影响。对于不同取向的ZnO薄膜,分别去除结构导向剂(SDA)和敏化剂吸附后,进行时间分辨光电流测量,强度调制光电流光谱(IMPS),强度调制光电压光谱(IMVS)和电流-电压曲线在含有I3(-)/ I-作为氧化还原电解质的乙腈基电解质中进行测量。晶体取向对跨这种膜的电荷传输具有显着影响,因此反映在观察到的电极动力学中。电影最初是在例如例如,Courmarin 343作为SDA,显示出对照明的明显更快的响应。由IMPS和IMVS的结果计算出增加的电子扩散系数和扩散长度,这是由于薄膜中电子移动较快所致。讨论了这些发现对通过电化学沉积制备的敏化ZnO膜的进一步改进的意义。

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