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Enhanced Photocatalytic Activity of Aerogel Composed of Crooked Carbon Nitride Nanolayers with Nitrogen Vacancies

机译:增强了由横向空位的弯曲碳氮化纳米组成的气凝胶的光催化活性

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摘要

Self-supported aerogel composed of carbon nitride nanolayers can act as a bifunctional photocatalyst and show enhanced photoreduction and photooxidation performance due to the large surface areas and nitrogen vacancies. The carbon nitride aerogel can catalyze hydrogen evolution at a rate of nearly 4.2 mmol h(-1) g(-1) and oxidize benzyl alcohols with a high conversion efficiency and selectivity under milder conditions. Note that the activity of carbon nitride aerogel for photochemical alcohol oxidation shows outstanding performance compared with carbon nitride based photocatalysts. Both density functional theory and experimental results demonstrate that the introduction of nitrogen vacancies within the carbon nitride aerogel contributes to the formation of a crooked structure and enhanced adsorption of oxygen compared with a bulk sample.
机译:由氮化碳纳米层组成的自支撑气凝胶可作为双官能光催化剂作用,并且由于大的表面积和氮空位,显着提高了光电氧化和光氧化性能。 碳氮化物气凝胶可以以近4.2mmolH(-1)g(-1)的速率催化氢气进化,并在较高的转化效率和较温和的条件下将苄醇氧化苄醇。 注意,与基于氮化物的光催化剂相比,用于光化学醇氧化的碳氮化物气凝胶的活性表现出出色的性能。 密度函数理论和实验结果表明,氮化物气凝胶内的氮空位引入有助于形成弯曲的结构,并与散装样品增强氧气吸附。

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