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Facile synthesis of iron and cerium co-doped g-C_3N_4 with synergistic effect to enhance visible-light photocatalytic performance

机译:简便地合成铁和铈共掺杂的g-C_3N_4具有协同作用,以增强可见光的光催化性能

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摘要

A novel visible-light-driven Fe and Ce bimetallic co-doped g-C3N4 (Fe-Ce/CN) photocatalyst was successfully fabricated by a straightforward method. Experimental results indicated that no matter in the single - pollutant system or mixed pollutants system containing Cr(VI) and an organic dye, Fe-Ce/CN exhibits super photocatalytic activity. It is mainly caused by the synergistic effect of Fe and Ce ions. Fe inserted into the lattice of g-C3N4 could narrow the band gap and inhibit combination of photogenerated electron-hole pairs. More importantly, the existence of Fe and Ce would improve the redox cycle with each other which is benefit for further increasing charge separation, light absorption and quantum efficiency. Furthermore, the controlled experiments and electron spin resonance (ESR) were performed to identify the relevant reactive species. Possible photocatalytic process of simultaneously removing mixed pollutants and mechanism were proposed. In general, this work provides a facile method to improve the photocatalytic activity of photocatalyst.
机译:通过简单的方法成功地制备了新型可见光驱动的Fe和Ce双金属共掺杂g-C3N4(Fe-Ce / CN)光催化剂。实验结果表明,无论在含有Cr(VI)和有机染料的单一污染物系统或混合污染物系统中,Fe-Ce / CN均具有超强的光催化活性。这主要是由Fe和Ce离子的协同作用引起的。插入g-C3N4晶格中的铁会缩小带隙并抑制光生电子-空穴对的结合。更重要的是,Fe和Ce的存在将彼此改善氧化还原循环,这对于进一步增加电荷分离,光吸收和量子效率是有利的。此外,进行了受控实验和电子自旋共振(ESR)以确定相关的反应物种。提出了同时去除混合污染物的可能的光催化过程和机理。通常,这项工作提供了一种简便的方法来提高光催化剂的光催化活性。

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