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首页> 外文期刊>Applied Surface Science >Oxidized SWCNT and MWCNT as co-catalysts of polymeric carbon nitride for photocatalytic hydrogen evolution
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Oxidized SWCNT and MWCNT as co-catalysts of polymeric carbon nitride for photocatalytic hydrogen evolution

机译:氧化的SWCNT和MWCNT作为聚合氮化碳的助催化剂,用于光催化制氢

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摘要

Polymeric carbon nitride (PCN) has been found as a promising photocatalyst for hydrogen evolution from water splitting. However, disadvantages limit its commercial applications. Therefore, modification of PCN in order to increase the hydrogen evolution rate and stability of the photocatalyst are extensively studied. In this contribution, we compare the influence of oxidation and the number of walls in carbon nanotubes (SWCNT and MWCNT) on the photocatalytic performance of PCN. It was found that oxidation of both types of CNT enhanced a photocurrent response, interfacial charge transfer and separation properties leading to the enhanced hydrogen evolution rate. Interestingly, MWCNT were found to enhance the charge transfer and separation properties more significantly. However, this material affected inferior co-catalytic behavior. We suggest it was related to the lower number of reactive electrons migrating to the surface reaction sites because of transferring to the inner tubes. SWCNT influence similar to 12-fold increase in H-2 evolution rate, while MWCNT influenced similar to 8-fold enhancement in comparison to pristine PCN.
机译:聚合氮化碳(PCN)被发现是一种有前景的光分解水分解氢的光催化剂。但是,缺点限制了其商业应用。因此,广泛研究了PCN的改性以增加氢的释放速率和光催化剂的稳定性。在这项贡献中,我们比较了氧化和碳纳米管(SWCNT和MWCNT)中壁数对PCN光催化性能的影响。已经发现,两种类型的CNT的氧化均增强了光电流响应,界面电荷转移和分离特性,从而提高了析氢速率。有趣的是,发现MWCNT可以更明显地增强电荷转移和分离性能。但是,该材料影响了较差的助催化行为。我们认为这与由于转移到内管而迁移到表面反应部位的反应性电子数量减少有关。与原始PCN相比,SWCNT的影响类似于H-2进化速率增加12倍,而MWCNT的影响类似于8倍增强。

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