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Influence of oxygen vacancy defects on Aurivillius phase layered perovskite oxides of bismuth towards photocatalytic environmental remediation

机译:氧空位缺陷对铋的Aurivillius相层状钙钛矿氧化物对光催化环境修复的影响

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摘要

The low light absorption and rapid recombination of photogenerated charge carriers are primary contributors to the low activity of various photocatalysts. Fabrication of oxygen vacancy defect-rich materials for improved photocatalytic activities has been attracting tremendous attention from researchers all over the world. In this work, we have compared the photocatalytic activities of oxygen vacancy-rich Bi2MoO6 (BMO-O-V) and Bi2WO6 (BWO-O-V) for the degradation of a model pharmaceutical pollutant, ciprofloxacin under visible light irradiation. The photocatalytic activity was increased from 47 to 77 and 40 to-67 for BMO-O-V and BWO-O-V, respectively in comparison to pristine oxides. This enhancement can be ascribed to suppressed charge carrier recombination and increased surface active sites. In addition, scavenger studies have been done to explain the role of photoinduced charge carriers in the degradation mechanism. Moreover, oxygen vacancy-rich photocatalysts have remained stable even after three consecutive cycles, making them promising materials for practical applications. Overall, this work provides deeper insight into the design and development of oxygen vacancy-rich materials.
机译:光生载流子的低光吸收和快速复合是导致各种光催化剂活性低的主要因素。制备富含氧空位缺陷的材料以改善光催化活性一直受到全世界研究人员的极大关注。本工作比较了富氧空位Bi2MoO6(BMO-O-V)和Bi2WO6(BWO-O-V)在可见光照射下降解模式药物污染物环丙沙星的光催化活性。与原始氧化物相比,BMO-O-V和BWO-O-V的光催化活性分别从47%提高到77%和40%提高到-67%。这种增强可归因于抑制的电荷载流子复合和表面活性位点的增加。此外,已经进行了清道夫研究来解释光诱导电荷载流子在降解机制中的作用。此外,富氧空位光催化剂即使在连续三个循环后仍保持稳定,使其成为具有实际应用前景的材料。总体而言,这项工作为富氧空位材料的设计和开发提供了更深入的见解。

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