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首页> 外文期刊>Nanoscale >Water-assisted production of honeycomb-like g-C3N4 with ultralong carrier lifetime and outstanding photocatalytic activity
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Water-assisted production of honeycomb-like g-C3N4 with ultralong carrier lifetime and outstanding photocatalytic activity

机译:水辅助生产蜂窝似的g-C3N4超长载体寿命和突出光催化活性

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摘要

Graphitic carbon nitride (g-C3N4) is a visible light photocatalyst, limited by low activity mainly caused by rapid recombination of charge carriers. In the present work, honeycomb-like g-C3N4 was synthesized via thermal condensation of urea with addition of water at 450 degrees C for 1 h. Prolonging the condensation time caused the morphology of g-C3N4 to change from a porous honeycomb structure to a velvet-like nanoarchitecture. Unlike in previous studies, the photocatalytic activity of g-C3N4 decreased with increasing surface area. The honeycomb-like g-C3N4 with a relatively low surface area showed highly enhanced photocatalytic activity with an NO removal ratio of 48%. The evolution of NO2 intermediate was dramatically inhibited over the honeycomb-like g-C3N4. The short and long lifetimes of the charge carriers for honeycomb-like g-C3N4 were unprecedentedly prolonged to 22.3 and 165.4 ns, respectively. As a result, the honeycomb-like g-C3N4 was highly efficient and stable in activity and could be used repeatedly. Addition of water had the following multiple positive effects on g-C3N4: (1) formation of the honeycomb structure, (2) promotion of charge separation and migration, (3) enlargement of the band gap, (4) increase in production yield, and (5) decrease in energy cost. These advantages make the present preparation method for highly efficient g-C3N4 extremely appealing for large-scale applications. The active species produced from g-C3N4 under illumination were confirmed using DMPO-ESR spin-trapping, the reaction intermediate was monitored, and the reaction mechanism of photocatalytic NO oxidation by g-C3N4 was revealed. This work could provide an attractive alternative method for mass-production of highly active g-C3N4-based photocatalysts for environmental and energetic applications.
机译:石墨碳氮化(g-C3N4)是可见的光的光催化剂、低限制活动主要是由于电荷的快速重组运营商。通过热缩合g-C3N4合成尿素与水在450摄氏度1 h。延长凝结时间引起的从多孔g-C3N4的形态学改变velvet-like蜂窝结构nanoarchitecture。g-C3N4催化活性的降低增加表面积。g-C3N4表面积显示相对较低高度增强的光催化活性没有删除的比率为48%。中间是极大地抑制了蜂窝似的g-C3N4。航空公司收取的一生蜂窝似的g-C3N4是空前分别延长至22.3和165.4 ns。因此,蜂窝似的g-C3N4高度高效和稳定的活动和可能重复使用。以下对g-C3N4多个积极作用:(1)形成的蜂窝状结构,(2)促进电荷分离和迁移,(3)带隙的增大,(4)增加生产产量,(5)减少能量成本。为高效g-C3N4制备方法非常吸引人的大规模应用。从下g-C3N4产生的活性物种使用DMPO-ESR照明被证实spin-trapping,反应中间监测和反应机理由g-C3N4是没有光催化氧化透露。替代方法大规模生产的高度活跃g-C3N4-based催化剂为环境和充满活力的应用程序。

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