首页> 外文期刊>Phosphorus, Sulfur, and Silicon and the Related Elements >Preparation of hollow nanospheres g-C3N4 loaded by Keggin type Cu mono-substituted heteropoly acid with enhanced visible-light harvesting and electron transfer properties for high-efficiency photocatalysis
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Preparation of hollow nanospheres g-C3N4 loaded by Keggin type Cu mono-substituted heteropoly acid with enhanced visible-light harvesting and electron transfer properties for high-efficiency photocatalysis

机译:Keggin型Cu单取代的杂多酸负载的中空纳米球G-C3N4的制备,具有增强的可见光收获和电子转移性能,用于高效光催化

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摘要

A series of heterojunction catalysts (CuCN-X) were successfully fabricated by loading the different amounts of Keggin type Cu mono-substituted heteropoly acid (HPW11Cu) on the surface of hollow nanospheres g-C3N4 (HSCN). The HSCNs were prepared by using SiO2 as a hard template. The chemical structure, porosity, morphology and electronic property of the prepared catalysts were investigated using XRD, SEM, N-2-absorption isotherm and XPS. The results indicated that the modified HSCN show prominent absorption in the visible light range and decrease the band gap. The greatly enhanced photocatalytic activity of obtained CuCN-X have been shown by the degradation of Rhodamine B (RhB), reduction of CO2 and production of photocatalytic hydrogen under visible light irradiation. More significantly, CuCN-15 has shown significantly improved photocatalytic performance at 4.5, 3.5 and 3.3 times higher that of than HSCN for the degradation of RhB, reduction of CO2 and production of photocatalytic hydrogen, respectively. Furthermore, the mechanism for the enhanced photocatalytic activity of CuCN-X is proposed to be due to the formation of heterojunction. The electrons can be rapidly transferred from HSCN to HPW11Cu, in which facilitate charge separation and charge transfer.
机译:通过在中空纳米球G-C3N4(HSCN)表面上加载不同量的Keggin型Cu单取代的杂多酸(HPW11CU)来成功制造一系列异质结催化剂(CUCN-X)。通过使用SiO 2作为硬模​​板制备HSCN。使用XRD,SEM,N-2吸收等温线和XPS研究制备催化剂的化学结构,孔隙率,形态和电子性能。结果表明,改性的HSCN在可见光范围内显示出突出的吸收并降低带隙。通过罗丹明B(RHB)的降解,在可见光照射下,通过罗丹明B(RHB)的降解,降低COCN-X的大大增强的光催化活性。更明显地,CUCN-15显示出4.5,3.5和3.5和3.3倍的光催化性能显着提高至HSCN,以分别降解RHB,减少二氧化碳和光催化氢的生产。此外,提出了CUCN-X的增强光催化活性的机制是由于异质结的形成。电子可以从HSCN迅速转移到HPW11CU,其中促进电荷分离和电荷转移。

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