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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Solvothermal synthesis of Z-scheme AgIn5S8/Bi2WO6 nano-heterojunction with excellent performance for photocatalytic degradation and Cr(VI) reduction
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Solvothermal synthesis of Z-scheme AgIn5S8/Bi2WO6 nano-heterojunction with excellent performance for photocatalytic degradation and Cr(VI) reduction

机译:Z-SchemeD agin5s8 / bi2wo6纳米异质结合的溶剂热合成具有优异的光催化降解和Cr(vi)的优异性能

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Bifunctional Z-scheme AgIn5S8/Bi2WO6 nano-heterojunctions with excellent performance for photocatalytic degradation of refractory pharmaceutical contaminants and reduction of aqueous Cr(VI) were synthesized by solvothermal method. The photocatalytic degradation performance of AgIn5S8/Bi2WO6 heterojunctions is related with the AgIn5S8 content, and the optimal decomposition efficiency of tetracycline hydrochloride (TC center dot HCl) aqueous solution by 10% AgIn5S8/Bi2WO6 under visible-light irradiation reached 92% within 2 h, which is much higher than that of single AgIn5S8 (53%) and Bi2WO6 (67%) nanoflower. The highest photocatalytic degradation performance of 10% AgIn5S8/Bi2WO6 nano-heterojunction can be put down to the most efficacious separation of photoexcited electrons and holes, and the extremely positive valence band potential of Bi2WO6. The reduction efficiency of Cr(VI) by 10% AgIn5S8/Bi2WO6 heterojunction is more than two times that of pure Bi2WO6, while is still lower than that of pure AgIn5S8, which can be interpreted by the Z-scheme path of e-h transfer in AgIn5S8/Bi2WO6 heterojunctions and the further oxidation of Cr(III) by hydroxyl radicals. The COD removal efficiency of pharmaceutical industry wastewater by the photocatalysis of Z-scheme AgIn5S8/Bi2WO6 heterojunctions reached 77%, indicating that the developed Z-scheme AgIn5S8/Bi2WO6 heterojunctions are promising in efficacious disposal of refractory pharmaceutical contaminants and Cr(VI) in water. (C) 2019 Elsevier B.V. All rights reserved.
机译:双官能Z-方案AgIn5S8 / Bi2WO6与耐火药物污染物和还原Cr水溶液(VI)的光催化降解性能优良的纳米异质结,通过溶剂热法合成。 AgIn5S8 / Bi2WO6异质结的光催化降解性能与AgIn5S8内容相关的,并且通过10%AgIn5S8 / Bi2WO6可见光照射下盐酸四环素(TC中心点HCl)的水溶液的最适分解效率在2小时内达到92%,这比单AgIn5S8(53%)和Bi2WO6(67%)纳米花的高得多。 10%AgIn5S8 / Bi2WO6纳米异质结的最高的光催化降解性能可以归因于光激发电子和空穴的最有效的分离,Bi2WO6的极为正价带的潜力。由10%AgIn5S8 / Bi2WO6异质结的Cr(VI)的还原效率是纯Bi2WO6的两倍以上,而比纯AgIn5S8,其可通过在AgIn5S8转移诶Z-方案路径被解释的仍然是降低/ Bi2WO6异质结,并通过羟基自由基的Cr(III)的进一步氧化。由Z-方案AgIn5S8 / Bi2WO6异质结的光催化制药工业废水的COD去除率达到77%,这表明发达Z-方案AgIn5S8 / Bi2WO6异质结在水中有效的处置耐火药物污染物和Cr(VI)有前途。 (c)2019 Elsevier B.v.保留所有权利。

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