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首页> 外文期刊>Angewandte Chemie >A Rapid Microwave-Assisted Thermolysis Route to Highly Crystalline Carbon Nitrides for Efficient Hydrogen Generation
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A Rapid Microwave-Assisted Thermolysis Route to Highly Crystalline Carbon Nitrides for Efficient Hydrogen Generation

机译:快速微波辅助热解途径,以高效碳氮化碳化为有效的氢气

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摘要

Highly crystalline graphitic carbon nitride (g-C3N4) with decreased structural imperfections benefits from the suppression of electron-hole recombination, which enhances its hydrogen generation activity. However, producing such g-C3N4 materials by conventional heating in an electric furnace has proven challenging. Herein, we report on the synthesis of high-quality g-C3N4 with reduced structural defects by judiciously combining the implementation of melamine-cyanuric acid (MCA) supramolecular aggregates and microwaveassisted thermolysis. The g-C3N4 material produced after optimizing the microwave reaction time can effectively generate H-2 under visible-light irradiation. The highest H-2 evolution rate achieved was 40.5 mu mol h(-1), which is two times higher than that of a g-C3N4 sample prepared by thermal polycondensation of the same supramolecular aggregates in an electric furnace. The microwave-assisted thermolysis strategy is simple, rapid, and robust, thereby providing a promising route for the synthesis of high-efficiency g-C3N4 photocatalysts.
机译:高度结晶的石墨碳氮化物(G-C3N4)具有降低的结构缺陷效应从抑制电子空穴重组,这增强了其氢气产生活性。然而,通过在电炉中的常规加热产生这种G-C3N4材料已经证明了具有挑战性。在此,我们通过明智地结合三聚氰胺 - 氰基酸(MCA)超分子聚集和微波酵母热解来报告具有降低的结构缺陷的高质量G-C3N4的合成。优化微波反应时间后生产的G-C3N4材料可以在可见光照射下有效地产生H-2。获得的最高H-2进化速率为40.5μmolH(-1),这比通过电炉中相同的超分子聚集体的热缩聚物制备的G-C3N4样品高出两倍。微波辅助热解策略简单,快速和稳健,从而提供了合成高效G-C3N4光催化剂的有希望的途径。

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