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首页> 外文期刊>Catalysis science & technology >Facile one-pot synthesis of mesoporous g-C3N4 nanosheets with simultaneous iodine doping and N-vacancies for efficient visible-light-driven H-2 evolution performance
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Facile one-pot synthesis of mesoporous g-C3N4 nanosheets with simultaneous iodine doping and N-vacancies for efficient visible-light-driven H-2 evolution performance

机译:老掉牙的合成介孔g-C3N4nanosheets同时碘掺杂和N-vacancies高效visible-light-driven2进化性能

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摘要

Direct and efficient visible-light water splitting by photocatalysis is essential for the sustainable conversion of solar energy into H-2 fuel. In this study, mesoporous nanostructured g-C3N4 with simultaneously incorporated N-vacancies and iodine dopant was prepared by a straightforward one-step approach. The simultaneous thermolysis of glucose and NH4I resulted in several phenomena, including (i) synergistic exfoliation of iodine doped mesoporous g-C3N4, (ii) introduction of N-vacancies due to the release of more nitrogen-rich dynamic gases, and (iii) extended visible light absorption due to the strategic band positions of midgap states below the conduction band, which functions as an efficient reservoir to temporarily trap the radiative electrons in the modified g-C3N4. As a result, the as-synthesized iodine doped mesoporous g-C3N4 demonstrated an outstanding photocatalytic H-2 evolution performance of 7819.2 mu mol h(-1) g(-1) under simulated solar light irradiation, which was nearly 6.5 folds higher than that of the bulk g-C3N4 and other typical doped g-C3N4 photocatalysts. Our work proposed a simple and scalable route to synthesize high-performance metal-free g-C3N4 photocatalysts by changing the electron transition via rational band structure engineering.
机译:直接和高效可见光分解水通过光催化是必不可少的可持续的太阳能转化为2燃料。同时g-C3N4与合并N-vacancies和碘掺杂剂是由一个准备的简单的一步的方法。同时热解的葡萄糖和NH4I导致了一些现象,包括(我)协同碘掺杂的剥落(2)引入介孔g-C3N4N-vacancies由于更多的释放富氮动态气体,和(3)扩展可见光吸收由于战略乐队midgap州以下的位置作为一个有效的传导带,功能水库临时陷阱辐射电子g-C3N4修改。as-synthesized碘掺杂介孔g-C3N4展示了一位杰出的光催化2进化性能7819.2亩摩尔h (1)g(1)在模拟太阳光线照射下,几乎是6.5折高于大部分g-C3N4和其他典型的掺杂g-C3N4论文的。可伸缩的路线合成高性能不含金属的g-C3N4催化剂通过改变电子通过理性的能带结构过渡工程。

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