首页> 外文期刊>New Journal of Chemistry >Efficient visible-light photocatalytic heterojunctions formed by coupling plasmonic Cu2-xSe and graphitic carbon nitride
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Efficient visible-light photocatalytic heterojunctions formed by coupling plasmonic Cu2-xSe and graphitic carbon nitride

机译:等离子体Cu2-xSe与石墨氮化碳偶合形成的高效可见光光催化异质结

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摘要

Photocatalytic semiconductors have attracted considerable attention due to their applications in the degradation of organic pollutants. However, the low solar-light harvesting and high electron-hole recombination rate limit the efficiency of photocatalysts. The newly developed localized surface plasmon resonance (LSPR) can offer a new opportunity to overcome the limited efficiency to some extent. In this study, heterojunctions (Cu2-xSe-g-C3N4) incorporating plasmonic semiconductor Cu2-xSe with graphitic carbon nitride (g-C3N4) are proposed as visible light photocatalysts. Their photocatalytic performance is tested and proven via the degradation of methyl blue (MB) in an aqueous solution. When the mass percentage composition of Cu2-xSe reached 60%, the as-prepared composite exhibited the highest photocatalytic activity, which was almost 6.1 and 2.8 times as high as that of individual Cu2-xSe and g-C3N4, respectively. The remarkable photocatalytic efficiency of such Cu2-xSe-g-C3N4 heterojunctions under visible light illumination due to both plasmonic enhancement of the catalyst and synergetic effect of the co-catalyst is shown. This work can provide a new methodology to develop stable and highly efficient heterojunction photocatalysts.
机译:光催化半导体由于其在降解有机污染物中的应用而备受关注。然而,低的太阳光收集和高的电子-空穴复合率限制了光催化剂的效率。新近开发的局部表面等离振子共振(LSPR)可以在一定程度上克服新的局限性。在这项研究中,提出了将等离子体半导体Cu2-xSe与石墨氮化碳(g-C3N4)结合的异质结(Cu2-xSe-g-C3N4)作为可见光光催化剂。通过在水溶液中降解甲基蓝(MB)来测试和证明它们的光催化性能。当Cu2-xSe的质量百分比组成达到60%时,所制备的复合物表现出最高的光催化活性,分别是单独的Cu2-xSe和g-C3N4的近6.1倍和2.8倍。由于催化剂的等离子体增强和助催化剂的协同作用,在可见光照射下,此类Cu2-xSe-g-C3N4异质结具有显着的光催化效率。这项工作可以提供一种新的方法来开发稳定和高效的异质结光催化剂。

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