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Oxygen vacancy modulation of two-dimensional -Ga2O3 nanosheets as efficient catalysts for photocatalytic hydrogen evolution

机译:氧空位的二维调制-Ga2O3 nanosheets高效的催化剂光催化氢进化

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Controlling the creation of oxygen vacancies can effectively regulate the optical and electronic properties of metal oxide nanomaterials. Over the past several decades, numerous metal oxides with oxygen vacancies have been developed. However, an investigation about oxygen vacancies leading to the formation of nanosheets with different thicknesses has not been available up to now. Here, we report the oxygen vacancy modulated formation of -Ga2O3 nanosheets and demonstrate that the thickness of the nanosheets is not the decisive factor in the photocatalytic hydrogen evolution reaction of ultrathin 2D nanosheets. Detailed structural characterization indicated that -Ga2O3 prepared at 160 degrees C (-160) with a morphology of ultrathin nanosheets possesses the highest oxygen vacancy concentration and an optimal thickness of the nanosheets. The enhanced photocatalytic performance could be determined from the synergistic effects between the ultrathin 2D structure and the O-vacancies confined in the ultrathin nanosheets. This work provides an efficient strategy to regulate the formation of nanosheets at the atomic scale and enrich the study on the effect of oxygen vacancies in the photocatalytic water splitting reaction.
机译:控制氧气的创造职位空缺有效地调节光学和电子金属氧化物纳米材料的性质。过去几十年里,大量的金属氧化物氧气空位就已经开发出来。调查关于氧气空缺导致nanosheets不同的形成厚度没有可用的。在这里,我们报告了氧空位调制形成-Ga2O3 nanosheets和演示nanosheets不是的厚度光催化氢的决定性因素超薄的进化反应2 d nanosheets。详细的结构特征表明-Ga2O3准备在160摄氏度(-160)超薄nanosheets拥有的形态氧空位浓度和最高nanosheets的最佳厚度。光催化性能可以确定之间的协同效应超薄二维结构和O-vacancies在超薄nanosheets。提供了一个有效的策略来调节在原子尺度nanosheets和形成丰富了研究氧的影响空缺的光催化水分解的反应。

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