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首页> 外文期刊>Catalysis science & technology >Effect of carbon and nitrogen double vacancies on the improved photocatalytic hydrogen evolution over porous carbon nitride nanosheets dagger
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Effect of carbon and nitrogen double vacancies on the improved photocatalytic hydrogen evolution over porous carbon nitride nanosheets dagger

机译:碳和氮的影响双空缺改进光催化氢进化在多孔氮化碳nanosheets匕首

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摘要

Porous carbon nitride nanosheets with carbon and nitrogen double vacancies have been synthesized by a soft template-supported one-pot method. Besides their highly defined and unambiguous structure, they also show minimal thickness and high crystallinity. This porous carbon nitride exhibits great enhancement in photocatalytic hydrogen evolution activity (297.6 mu mol h(-1)), which is 9.6 times higher than 31.2 mu mol h(-1) of the pristine one. An apparent quantum yield of 12.7% at 420 nm for hydrogen production can be achieved over these porous nanosheets. The detailed investigation suggests that there are carbon vacancies along with nitrogen vacancies. Besides nitrogen vacancies, carbon vacancies also play a positive role in the improvement of hydrogen evolution. In addition, the photocatalytic performance especially hydrogen evolution increases with the increase of the C/N ratio.
机译:多孔氮化碳与碳和nanosheets氮双空缺已被合成由软template-supported锅方法。除了他们的高度定义和明确的结构,他们也显示厚度和最小高结晶度。展品伟大增强光催化氢进化活动(297.6μ摩尔h (1)),这是9.6倍31.2μ摩尔h (1)原始的。12.7%在420 nm制氢这些多孔nanosheets实现。详细的调查表明,有随着氮空缺碳空缺。除了氮空缺,碳空缺在的提高发挥积极作用氢进化。光催化性能特别是氢进化C / N的增加而增加比率。

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