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The impact of crystal defects towards oxide semiconductor photoanode for photoelectrochemical water splitting

机译:晶体缺陷对光电化学水分解中氧化物半导体光阳极的影响

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摘要

Photoelectrochemical (PEC) water oxidation for sustainable clean energy and fuel production is a potential solution to the demands of organic pollutant removal and growing energy consumption. Development of high performance photoanodes, which is a key component in the system, is one of the central topics in the area. The crystal defect is an old concept but fruiting new understanding with promotive impact to the development of high performance photoanodes. In this review, we elucidated the typical defects involved in the photoanode with the position where they play the roles in the structure and how the properties of photoanode are influenced. In addition, we summarized the feasible protocols to maximize the pros but reduce the cons brought by having defects to the photoanode performance based on recent most prominent research advancements in the field. Finally, we briefly sketched the future perspective with the challenges of this topic when in the scenario of possible developments into practical applications.
机译:用于可持续清洁能源和燃料生产的光化学(PEC)水氧化技术是去除有机污染物和增加能源消耗的潜在解决方案。高性能光电阳极的开发是该系统的关键主题之一,这是系统的关键组成部分。晶体缺陷是一个古老的概念,但取得了新的认识,对高性能光电阳极的发展产生了积极影响。在这篇综述中,我们阐明了光电阳极所涉及的典型缺陷,以及它们在结构中所起的位置以及如何影响光电阳极的性能。另外,基于该领域最近最重要的研究进展,我们总结了可行的协议,以最大化优点,同时减少由于对光电阳极性能存在缺陷而带来的弊端。最后,当在实际应用中可能发展时,我们简要概述了本主题所面临挑战的未来前景。

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