首页> 外文期刊>Chemical engineering journal >The facile fabrication of novel visible-light-driven Z-scheme CuInS2/Bi2WO6 heterojunction with intimate interface contact by in situ hydrothermal growth strategy for extraordinary photocatalytic performance
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The facile fabrication of novel visible-light-driven Z-scheme CuInS2/Bi2WO6 heterojunction with intimate interface contact by in situ hydrothermal growth strategy for extraordinary photocatalytic performance

机译:小型可见光驱动Z方案的外壳制造Cuins2 / Bi2wo6异质结,其具有亲密的界面接触,通过原位水热生长策略进行非凡的光催化性能

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摘要

The pollution of pharmaceutical wastewater has attracted global attention. Photocatalysis is an attractive yet challenging method for the degradation of pharmaceutical residues. Fabricating efficient Z-scheme hetero-junctions with intimate interface contact for enhancing the performance of photocatalysts is a challenge. Herein, novel visible-light-driven direct Z-scheme CuInS2/Bi2WO6 heterojunctions with intimate interface contact were successfully synthesized by in situ hydrothermal growth of Bi2WO6 directly on the surface of CuInS2 networklike microspheres, and the content of CuInS2 was optimized. The photocatalytic activity of optimal Z-scheme 15% CuInS2/Bi2WO6 for the degradation of tetracycline hydrochloride (TC'HCl) is more than three times that of bare CuInS2 and 17% higher than that of Bi2WO6, which is attributed that the intimate interface contact can assure excellent interfacial charge transfer abilities. Moreover, Z-scheme CuInS2/Bi2WO6 heterojunctions are highly stable with no inactivation in photocatalytic cycles. More importantly, real pharmaceutical industry wastewater can be efficiently disposed by Fenton-aided photocatalysis of Z-scheme CuInS2/Bi2WO6 heterojunctions with COD removal efficiency being 90.5%, which is much higher than the reported results, and thus sets a new performance benchmark for practical application in real pharmaceutical wastewater treatment.
机译:药物废水的污染引起了全球关注。光催化是一种有吸引力但挑战性的药物残留物的挑战方法。制造高效的Z形方案杂连接,具有紧密界面接触,用于增强光催化剂的性能是挑战。在此,通过直接在CuinS2网状微球表面的Bi2WO6的原位水热生长,成功地合成了一种具有紧密界面触点的新型可见光驱动的直接Z形Z-Schine Z-Schemence。最佳Z方案的光催化活性15%Cuins2 / Bi2WO6用于盐酸四环素(TC'HCl)的降解,比Bi2WO6高的裸Cuins2和17%高的三倍,这归因于密切界面接触可以确保出色的界面电荷转移能力。此外,Z形方案Cuins2 / Bi2WO6杂交差异高度稳定,在光催化循环中没有灭活。更重要的是,真正的制药行业废水可以通过Z-Schement 2 / Bi2wo6杂核算的芬顿辅助光催化,COD去除效率为90.5%,比报告的结果高得多,从而为实际设置新的性能基准。在真正的药物废水处理中的应用。

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