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Iron-Doped Bismuth Tungstate with an Excellent Photocatalytic Performance

机译:铁掺杂铋钨酸盐具有优异的光催化性能

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摘要

The metal-doping of Bi-based oxide photocatalysts to enhance the photocatalytic performance has been a research hotspot in recent years, but the research on the mechanism of doping-induced photoactivity improvement is still incomplete. To illustrate the mechanism completely and clearly, Fe-doped Bi2WO6, as an example, was synthesized by a facile hydrothermal route. Fe-doped Bi2WO6 exhibits a much higher photoactivity than pure Bi2WO6 in the degradation of RhodamineB (RhB) and salicylic acid (SA). By replacing W6+, the Fe3+ doping narrows the energy band gap and generates many oxygen vacancies, which can increase the adsorption of both RhB and SA, and the introduced defect and Fe-doping energy levels in the band gap of Bi2WO6 increase the separation efficiency of photoinduced charge carriers significantly. These lead to the considerable photoactivity enhancement of Fe-doped Bi2WO6. The photoactivity of Fe-doped Bi2WO6 is stable and superior to that of most reported modified Bi2WO6 photocatalysts. This work illustrates in detail the mechanism for the photoactivity improvement of Fe-doped Bi2WO6, which benefits the research of other metal-doped photocatalysts.
机译:近年来,Bi基氧化物光催化剂的金属掺杂是增强光催化性能的研究热点,但对掺杂诱导的光活化改善机制的研究仍然不完整。为了完全清楚地说明该机制,作为示例,Fe-Doped Bi2WO6通过容易的水热途径合成。 Fe-Doped Bi2wo6在罗丹明碱(RHB)和水杨酸(SA)的降解中表现出比纯BI2WO6更高的光度。通过更换W6 +,Fe3 +掺杂缩小能量带隙并产生许多氧空位,这可以增加RHB和SA的吸附,并且Bi2WO6带隙中引入的缺陷和Fe-掺杂能量水平提高了分离效率光抑制电荷载体显着。这些导致Fe-Doped Bi2WO6的相当大的光接收增强。 Fe-Doped Bi2wo6的光接收率稳定,优于大多数报道的修饰Bi2wo6光催化剂。该工作详细说明了Fe掺杂Bi2WO6的照相改善的机制,这有利于其他金属掺杂光催化剂的研究。

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