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Recent progress in efficiency of hydrogen evolution process based photoelectrochemical cell

机译:基于氢析出过程的光电化学电池效率的最新进展

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Photoelectrochemical water splitting (PEC) has emerged as an important strategy for the generation of low cost, highly efficient and sustainable hydrogen fuel. However, improvement in PEC water splitting is facing several challenges such as limited harvesting of solar light, slow charge separation rate and fast carriers recombination. Our study focuses on the brief description of PEC water splitting principle, basic working mechanism and different materials for photoanodes such as carbon and its composites, transition metals, nanomaterials and nanostructures to overcome the challenges to an extent. Numerous strategies have been discussed to investigate the performance of PEC water splitting. This work emphasized on the recent progress for sustainable hydrogen production through PEC water splitting. These photoanodic materials are good contender in future water splitting applications and enhance the overall photocurrent generation and hydrogen evolution efficiency. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:光电化学水分解法(PEC)已成为生产低成本,高效和可持续氢燃料的重要策略。然而,PEC水分解的改善面临着一些挑战,例如有限的太阳光收集,缓慢的电荷分离速率和快速的载流子复合。我们的研究重点是简要介绍PEC的水分解原理,基本工作机理以及光阳极的不同材料,例如碳及其复合材料,过渡金属,纳米材料和纳米结构,以在一定程度上克服挑战。已经讨论了许多策略来研究PEC水分解的性能。这项工作强调了通过PEC分解水可持续制氢的最新进展。这些光阳极材料是未来水分解应用中的有力竞争者,并提高了整体光电流的产生和氢的释放效率。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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