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首页> 外文期刊>Catalysis science & technology >Pt quantum dots deposited on N-doped (BiO)(2)CO3: enhanced visible light photocatalytic NO removal and reaction pathway
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Pt quantum dots deposited on N-doped (BiO)(2)CO3: enhanced visible light photocatalytic NO removal and reaction pathway

机译:Pt量子点沉积在n型(生物)(2)二氧化碳:提高可见光的光催化去除和反应途径

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摘要

In order to achieve efficient photocatalytic NO removal, N-doped (BiO)(2)CO3 hierarchical superstructures deposited with Pt quantum dots (2-4 nm) were fabricated by a one-pot hydrothermal method using ammonium bismuth citrate and H2PtCl6 as precursors. In such a combined way, visible light absorption and charge carrier separation can be simultaneously enhanced. The as-prepared Pt/N-doped (BiO)(2)CO3 catalysts exhibited a highly enhanced visible-light photocatalytic performance for NO removal and phenol degradation, which can be ascribed to the N doping that narrows the band gap, the formation of a Schottky barrier because of Pt that promotes electron/hole separation, and scattering and surface reflecting effects (SSR) caused by the hierarchical architecture. To reveal the reaction mechanism of photocatalytic NO oxidation, in situ DRIFTS investigation was applied to probe the reaction process, and a new intermediate, NO+, was firstly discovered during photocatalysis. Pt quantum dot deposition could change the reaction pathway via the inhibition of NO2 production. Based on ESR trapping and time-dependent observation of the reaction products, a new photocatalytic reaction pathway was proposed for photocatalytic NO oxidation with Pt/N-doped (BiO)(2)CO3. The present work could provide new perspectives for advancing the photocatalysis efficiency, offer a new insight into the photocatalytic NO oxidation process and promote large-scale environmental applications of high-performance photocatalysts.
机译:为了实现高效光催化删除,n型(生物)(2)二氧化碳等级制度上层建筑与Pt量子点(2 - 4海里)捏造了一个锅水热方法使用铋铵柠檬酸和H2PtCl6作为前体。结合方式,可见光吸收和电荷承运人可以同时分离增强。催化剂表现出高度增强为不可见光的光催化性能删除和苯酚降解,可以归因于缩小乐队的N掺杂差距,形成肖特基势垒的因为Pt促进电子/空穴分离,散射和表面反射的影响(SSR)引起的分层体系结构。揭示了光催化的反应机理没有氧化,现场调查应用于探测器的反应过程,和一个新的中间,没有+,首先被发现在光催化作用。通过抑制改变反应途径NO2生产。时间的观察反应产品,一个新的光催化反应途径提出了光催化没有氧化Pt / n型(生物)(2)二氧化碳。为推进提供新的视角光催化效率,提供了一个新的认识光催化氧化法和促进大规模环境的应用高性能的催化剂。

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