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Energy loss analysis in photoelectrochemical water splitting: a case study of hematite photoanodes

机译:光电化学水分裂中的能量损失分析 - 以赤铁矿光锅为例

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摘要

Insightful understanding of the energy loss mechanism during photoelectrochemical (PEC) processes is of vital importance for efficient solar fuel production. Potential-current features under light illumination are typically used to evaluate the effectiveness of the PEC processes. However, energy loss that leads to various shapes of measured photocurrent-potential (j-E) curves is still not well understood. Herein, based on hematite photoanodes, we systematically studied the photocurrent-potential-light intensity (j-E-I) relationships to acquire quantitative understanding of the loss mechanism during the PEC process by decoupling it into a photovoltaic (PV) and an electrocatalytic (EC) process. Both numerical simulation and experimental results have confirmed the reasonability of this analysis method. It provides comprehensive understanding of the energy loss at the semiconductor-electrolyte junction and the surface electrocatalysis process for further optimizing the PEC solar energy conversion process.
机译:对光电子化学(PEC)过程中的能量损失机制的富有能力理解对于高效的太阳能燃料生产至关重要。光照射下的电位电流特征通常用于评估PEC工艺的有效性。然而,导致各种形状的测量光电流电阻(J-E)曲线的能量损失仍然不受欢迎。这里,基于赤铁矿光电码,我们通过将其分离成光伏(PV)和电催化(EC)工艺,系统地研究了光电流 - 电位光强度(J-E-I)关系以获得PEC工艺期间对损耗机制的定量理解。两种数值模拟和实验结果都证实了该分析方法的合理性。它提供了全面了解半导体电解质结的能量损失和表面电解过程,以进一步优化PEC太阳能转换过程。

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