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首页> 外文期刊>Journal of Colloid and Interface Science >In situ construction of WO3 nanoparticles decorated Bi2MoO6 microspheres for boosting photocatalytic degradation of refractory pollutants
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In situ construction of WO3 nanoparticles decorated Bi2MoO6 microspheres for boosting photocatalytic degradation of refractory pollutants

机译:原位施工WO3纳米粒子装饰Bi2Moo6微球,用于促进耐火污染物的光催化降解

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Visible-light-driven (VLD) heterojunction photocatalysts for refractory contaminant degradation have aroused huge interest because of their outstanding photocatalytic performance. From the aspect of practical application, it is important to develop a highly efficient, durable, eco-friendly and inexpensive VLD photocatalyst. Herein, we report a novel VLD WO3/Bi2MoO6 heterojunction photocatalyst with remarkable photocatalytic activity, which was fabricated via an electrospinning-calcination-solvothermal route. The phase, composition, morphologies, and optical properties of WO3/Bi2MoO6 heterojunctions were comprehensively characterized. The photocatalytic performance of WO3/Bi2MoO6 heterojunctions was assessed by the removal of rhodamine (RhB) and tetracycline hydrochloride (TC) under visible light (VL). WO3/Bi2MoO6 heterojunctions displayed superior photocatalytic activities compared to Bi2MoO6, WO3, or the mechanical mixture of WO3 and Bi2MoO6. In particular, the heterojunction material (0.4WB, theoretical molar ratio of WO3/Bi2MoO6 is 0.4/1.0) exhibited the best degradation efficiency (100%) and mineralization rate (52.3%) in 90 min, both of which exceeded the observed rates for Bi2MoO6 by 5.3 and 6.4 times, respectively. Moreover, 0.4WB showed a good durability in eight runs. The optimized photocatalytic property of WO3/Bi2MoO6 can be attributed to enhanced VL absorption and reduced recombination efficiency of carriers owing to the synergistic effects between Bi2MoO6 and WO3. The necessity of direct contact between WO3/Bi2MoO6 and contaminants was experimentally verified. The study on photocatalytic mechanism demonstrates that superoxide free radicals (O-2(center dot-)) and photo-generated hole (h(+)) are dominantly responsible for the pollutant degradation, as demonstrated by the trapping experiments and electron spin resonance (ESR) analysis. Therefore, the WO3/Bi2MoO6 heterojunction holds huge potential to be utilized as a durable and highly active photocatalyst for wastewater treatment. (C) 2019 Elsevier Inc. All rights reserved.
机译:可见光驱动(VLD)异质结光催化剂,用于难治性污染物降解引起巨大的兴趣,因为它们出色的光催化性能。从实际应用的方面,重要的是开发一种高效,耐用,环保且廉价的VLD光催化剂。在此,我们报告了一种新型VLD WO3 / BI2MOO6异质结光催化剂,具有显着的光催化活性,通过静电纺丝 - 煅烧 - 溶剂热途径制造。综合表征WO3 / BI2MOO6异质结的相,组合物,形态和光学性质。通过在可见光(VL)下除去罗丹明(RHB)和四环素盐酸盐(TC)来评估WO3 / BI2MOO6杂疾病的光催化性能。 WO3 / BI2MOO6异质函数与WO3和BI2MOO6的BI2MOO6,WO3或机械混合物相比显示出优异的光催化活性。特别地,异质结材料(0.4WB,WO3 / BI2MOO6的理论摩尔比为0.4 / 1.0)在90分钟内显示出最佳的降解效率(100%)和矿化速率(52.3%),两者都超过了观察到的速率Bi2moo6分别为5.3和6.4次。此外,0.4WB显示出八个运行中的良好耐用性。 WO3 / BI2MOO6的优化光催化性能归因于由于BI2MOO6和WO3之间的协同效应,增强了载体的VL吸收和降低的重组效率。实验验证了WO3 / BI2MOO6和污染物之间直接接触的必要性。对光催化机制的研究表明,超氧化物自由基(O-2(中心点))和光产生的孔(H(+))主要负责污染物降解,如捕获实验和电子旋转共振( ESR)分析。因此,WO3 / Bi2Moo6异质结具有用于废水处理的耐用和高活性光催化剂的巨大电位。 (c)2019 Elsevier Inc.保留所有权利。

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