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Synthesis, Analysis, and Testing of BiOBr-Bi2WO6Photocatalytic Heterojunction Semiconductors

机译:BiOBr-Bi2WO6光催化异质结半导体的合成,分析和测试

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In photocatalysis, the recombination of electron-hole pairs is generally regarded as one of its most serious drawbacks. The synthesis of various composites with heterojunction structures has increasingly shed light on preventing this recombination. In this work, a BiOBr-Bi2WO6photocatalytic heterojunction semiconductor was synthesized by the facile hydrothermal method and applied in the photocatalytic degradation process. It was determined that both reaction time and temperature significantly affected the crystal structure and morphologies of the photocatalysts. BiOBr (50 at%)-Bi2WO6composites were prepared under optimum synthesis conditions (120°C for 6 h) and by theoretically analyzing the DRS results, it was determined that they possessed the suitable band gap (2.61 eV) to be stimulated by visible-light irradiation. The photocatalytic activities of the as-prepared photocatalysts were evaluated by the degradation ofRhodamine B (RhB)under visible-light irradiation. The experimental conditions, including initial concentration, pH, and catalyst dosage, were explored and the photocatalysts in this system were proven stable enough to be reused for several runs. Moreover, the interpreted mechanism of the heterojunction enhancement effect proved that the synthesis of a heterojunction structure provided an effective method to decrease the recombination rate of the electron-hole pairs, thereby improving the photocatalytic activity.
机译:在光催化中,通常将电子-空穴对的重组视为其最严重的缺点之一。具有异质结结构的各种复合材料的合成已越来越多地揭示了如何防止这种复合。本工作通过简便的水热法合成了BiOBr-Bi2WO6光催化异质结半导体,并将其应用于光催化降解过程中。已确定反应时间和温度均显着影响光催化剂的晶体结构和形态。 BiOBr(50 at%)-Bi2WO6复合材料是在最佳合成条件下(120°C持续6?h)制备的,并且通过理论分析DRS结果,确定它们具有合适的能带隙(2.612.6eV),可被可见光激发。光照射。通过在可见光照射下若丹明B(RhB)的降解来评估所制备光催化剂的光催化活性。探索了包括初始浓度,pH和催化剂用量在内的实验条件,该系统中的光催化剂被证明足够稳定,可以重复使用几次。此外,异质结增强作用的解释机理证明,异质结结构的合成提供了一种有效的方法来降低电子-空穴对的复合率,从而提高光催化活性。

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