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Defective ZnFe2O4 nanorods with oxygen vacancy for photoelectrochemical water splitting

机译:与氧空位缺陷ZnFe2O4纳米棒光电化学分解水

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摘要

A one-dimensional zinc ferrite (ZnFe2O4) nanorod photoanode was prepared by a simple solution method on the F-doped tin oxide glass substrate. Thermal treatment under a hydrogen or vacuum atmosphere improved the photoelectrochemical water oxidation activity up to 20 times. The various physical characterization techniques used revealed that oxygen vacancies were created by the treatments in the near surface region, which increased the donor density and passivated the surface states. Hydrogen treatment was more effective and it was important to find optimum treatment conditions to take advantage of the positive role of oxygen vacancy as a source of electron donors and avoid its negative effect as electron trap sites.
机译:一维锌铁氧体(ZnFe2O4)奈米棒光电阳极是由一个简单的解决方案F-doped锡氧化物玻璃衬底上的方法。热处理下氢或真空气氛改善了光电化学水氧化活动20倍。使用各种物理表征技术空缺是由显示,氧气治疗表面附近地区增加了捐赠密度和钝化表面状态。有效和重要的是找到最优利用治疗条件积极作用的氧空位的来源电子给体,避免其负面影响电子陷阱的网站。

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