首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Unveiling the role of tetragonal BiVO4 as a mediator for dual phase BiVO4/g-C3N4 composite photocatalysts enabling highly efficient water oxidation via Z-scheme charge transfer
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Unveiling the role of tetragonal BiVO4 as a mediator for dual phase BiVO4/g-C3N4 composite photocatalysts enabling highly efficient water oxidation via Z-scheme charge transfer

机译:揭示四方BIVO4作为双相BIVO4 / G-C3N4复合光催化剂的介质,通过Z方案电荷转移实现高效的水氧化

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Monoclinic scheelite BiVO4 (BVO-M) based materials are of great interest as photocatalysts for water oxidation essential to produce value-added chemical fuels, but their slow charge transfer and low activity are yet to be resolved. As a solution to overcome this challenge, we report Z-scheme photocatalyst fabricated by integrating the dual phase structure of monoclinic scheelite and tetragonal zircon-type BiVO4 (BVO-T) moieties with graphitic carbon nitride (g-C3N4) having pi-conjugated two dimensional layers suited to visible light-induced charge transfer. Moreover, V K-edge and Bi L3-edge X-ray absorption near-edge structure (XANES) and Fourier transformed extended X-ray absorption fine structure (EXAFS) spectra demonstrate that the tetragonal zircon-type BiVO4 structures in a Z-scheme catalyst form a bridge between BVO-M and g-C3N4 structures so that it acts as an electron mediator to accelerate charge transfer, in agreement with the zeta-potential analysis and the band structure revealed by UV-vis spectroscopy and ultraviolet photoelectron spectroscopy analyses. Furthermore, a Z-scheme photocatalyst is exhibited to show a 3-fold longer charge carrier lifetime than BVO-M, thereby enabling the greater than three-fold enhancement in photocatalytic water oxidation activity. Additionally, isotope O-18-labelling experiments reveal that evolved oxygen molecules result from water through photocatalytic water oxidation.
机译:单斜白钨矿的BiVO4(BVO-M)的材料是极大的兴趣作为光催化剂的水氧化必不可少的产品附加值的化工燃料,但其缓慢的电荷转移和低活性有待解决。作为一种解决方案,以克服这一挑战,我们报告Z-方案的光催化剂制造通过整合单斜白钨矿和四方锆石类的BiVO4(BVO-T)与石墨质碳氮化物部分(G-C3N4)的双相结构具有π共轭2二维层适合于可见光诱导的电荷转移。此外,V K-边缘和Bi L3-边缘X射线吸收近边结构(XANES)和傅里叶变换扩展X射线吸收精细结构(EXAFS)光谱表明,该四方锆石类的BiVO4结构在Z方案催化剂形成BVO-M和G-C3N4结构,使得它充当电子介体以加快电荷转移,在与ζ电位分析和带结构协议之间的桥梁揭示通过UV-vis光谱和紫外光电子能谱分析。此外,Z-方案的光催化剂表现出以显示3倍长的载流子比BVO-M的寿命,从而使得大于在光催化水氧化活性的三倍的增强。此外,同位素O型18标记实验揭示,放出的氧气分子从水通过光催化水氧化的结果。

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