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Preparation of ZnO/Bi2WO6 heterostructures with improved photocatalytic performance

机译:具有改进的光催化性能的ZnO / Bi2wo6异质结构的制备

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The construction of semiconductor heterojunction is considered an effective strategy to improve photocatalytic performance in degrading organic pollutants. Herein, the ZnO/Bi2WO6 (ZBW) heterostructures were prepared by hydrothermal method, and the photocatalytic properties of the samples were evaluated by degrading methylene blue (MB) under ultraviolet light irradiation. The obtained ZBW heterostructures exhibit superior photocatalytic activity to pure ZnO and Bi2WO6. The photocatalytic efficiency of ZBW is 97.95%, and the total organic carbon removal of MB is 95.48% after 120 min irradiation. Recycling experiments show that ZBW maintains good photocatalytic activity and stability after four cycles of use. Electron paramagnetic resonance and free radical capture experiments demonstrate that the photogenerated holes are the primary active group of the photocatalytic reaction, whereas hydroxyl and superoxide radicals play smaller roles. The formation of ZBW heterojunction in the composite promotes the separation of photogenerated electrons and holes, greatly improving the photocatalytic performance of the material.
机译:半导体异质结的构造被认为是改善有机污染物降解中光催化性能的有效策略。这里,通过水热法制备ZnO / Bi2WO6(ZbW)异质结构,通过在紫外光照射下通过降解亚甲基蓝(MB)来评价样品的光催化性质。所获得的ZbW异质结构对纯ZnO和Bi2WO6具有优异的光催化活性。 ZBW的光催化效率为97.95%,120分钟照射后MB的总机除去95.48%。再循环实验表明,ZBW在使用四个循环后保持良好的光催化活性和稳定性。电子顺磁共振和自由基捕获实验表明,光催化的孔是光催化反应的一次活性组,而羟基和超氧化物自由基起较小的作用。复合材料中ZBW异质结的形成促进了光生电子和孔的分离,大大提高了材料的光催化性能。

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