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首页> 外文期刊>Journal of Cleaner Production >Enhanced usage of visible light by BiSex for photocatalytic degradation of methylene blue in water via the tunable band gap and energy band position
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Enhanced usage of visible light by BiSex for photocatalytic degradation of methylene blue in water via the tunable band gap and energy band position

机译:BiSex通过可调带隙和能带位置增强了可见光对水中亚甲蓝的光催化降解

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摘要

The increasing demand for new materials with narrow bandgap energy, capable of harvesting the photons in the visible range, is central in the remediation of environmental pollutants by photocatalytic reactions. For the first time, we report a novel visible light driven photocatalyst of Bi2Se3/Bi1.007Se0.933 by the formation of solid solution composite. Both the individual Bi2Se3 and Bi1.007Se0.993 have very low photocatalytic efficiency under visible light irradiation; however, Bi2Se3/Bi1.007Se0.993 provides much higher efficiency in decomposing methylene blue (MB). Especially in the presence of H2O2, the reaction rate was enhanced by 15 times and 100% of MB degradation was obtained in 90 min. Characterization results confirmed that the bandgap of Bi2Se3/Bi1.007Se0.993 was greatly broadened to 1.38 eV compared with Bi2Se3 of 0.3 eV, which matched well with visible range. Moreover, the relative conduction band position vs. NHE of Bi2Se3/Bi1.007Se0.993 was -0.3 V, which was more negative than that of Bi1.007Se0.993 of +0.2 V. It was responsible to the excellent photocatalytic activity due to harvesting the photons in the visible range. Finally, N-type semiconductor based reduction O-2 to O-2(center dot-) and photoreduction of H2O2 into (OH)-O-center dot involved reaction mechanism under the visible light irradiation was proposed based on all the experimental results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有窄带隙能量的新材料的需求不断增长,这种材料能够在可见光范围内收集光子,这是通过光催化反应修复环境污染物的关键。首次,我们通过形成固溶体复合物报道了一种新型的Bi2Se3 / Bi1.007Se0.933可见光驱动的光催化剂。 Bi2Se3和Bi1.007Se0.993在可见光照射下均具有非常低的光催化效率。但是,Bi2Se3 / Bi1.007Se0.993提供了更高的分解亚甲基蓝(MB)的效率。特别是在H2O2存在下,反应速率提高了15倍,并且在90分钟内获得了100%的MB降解。表征结果证实,与Bi2Se3的0.3eV相比,Bi2Se3 / Bi1.007Se0.993的能带隙大大扩展到1.38eV,与可见光范围匹配良好。此外,Bi2Se3 / Bi1.007Se0.993的相对导带位置相对于NHE的-0.3 V,比+0.2 V的Bi1.007Se0.993的相对导带更负。这归因于其优异的光催化活性。在可见光范围内收集光子。最后,根据所有实验结果,提出了基于N型半导体的O-2还原成O-2(中心点)和H2O2光还原成(OH)-O-中心点的反应机理。 (C)2017 Elsevier Ltd.保留所有权利。

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