论文标题

准确确定光轴的电荷转移效率用于太阳能水分裂

Accurate Determination of the Charge Transfer Efficiency of Photoanodes for Solar Water Splitting

论文作者

Klotz, Dino, Grave, Daniel A., Rothschild, Avner

论文摘要

半导体光射线表面的氧气进化反应(OER)涉及氧化水的照片生成的孔。一定的一部分孔与传导带的电子重组到表面,从而导致表面重组损失。电荷转移效率XT定义为有助于水氧化反应的孔的通量与到达表面的孔的总通量之间的比率,是一个重要参数,有助于区分散装和表面重组损失。但是,通过常规伏安法测量对XT进行准确的确定是复杂的,因为只有总电流是测量的,并且很难在不同的电流贡献之间识别。切碎的光测量和空洞清道夫测量技术被广泛用于确定XT,但通常会导致错误。强度调制的光电流光谱(IMP)更适合准确地确定XT,因为它提供了有关总光电流和表面重组电流的直接信息。需要对不同光强度的IMPS测量进行仔细分析以说明非线性效应。我们比较了这些方法使用杂型赤铁矿光诺德斯获得的XT值。通过不同的分析方法以及不同的光源和光强度,可以获得XT值的广泛传播。结果的统计分析显示,与相同的光源,光强度和潜力进行的测量方法之间的良好相关性。但是,通过不同方法获得的结果存在相当大的差异。为了准确确定XT,我们建议使用偏置光强度的IMP测量值,以使辐照度尽可能接近标准太阳光谱。

The oxygen evolution reaction (OER) at the surface of semiconductor photoanodes involves photo-generated holes that oxidize water. A certain fraction of the holes that reach the surface recombine with electrons from the conduction band, giving rise to the surface recombination loss. The charge transfer efficiency, xt, defined as the ratio between the flux of holes that contribute to the water oxidation reaction and the total flux of holes that reach the surface, is an important parameter that helps to distinguish between bulk and surface recombination losses. However, accurate determination of xt by conventional voltammetry measurements is complicated because only the total current is measured and it is difficult to discern between different contributions to the current. Chopped light measurement and hole scavenger measurement techniques are widely employed to determine xt, but they often lead to errors. Intensity modulated photocurrent spectroscopy (IMPS) is better suited for accurate determination of xt because it provides direct information on both the total photocurrent and the surface recombination current. Careful analysis of IMPS measurements at different light intensities is required to account for nonlinear effects. We compare the xt values obtained by these methods using heteroepitaxial hematite photoanodes. A wide spread of xt values is obtained by different analysis methods and different light sources and light intensities. Statistical analysis of the results show good correlation between different methods for measurements carried out with the same light source, light intensity and potential. However, there is a considerable spread in the results obtained by different methods. For accurate determination of xt, we recommend IMPS measurements with a bias light intensity such that the irradiance is as close as possible to the standard solar spectrum.

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