Promoting visible-light-induced photocatalytic degradation of tetracycline by an efficient and stable beta-Bi2O3@g-C3N4 core/shell nanocomposite

纳米复合材料 光催化 可见光谱 水溶液 材料科学 纳米材料 壳体(结构) 降级(电信) 污染物 化学工程 纳米颗粒 异质结 化学 纳米技术 复合材料 光电子学 催化作用 有机化学 计算机科学 电信 工程类
作者
Yuanzhi Hong,Changsheng Li,Bingxin Yin,Di Li,Zhengyuan Zhang,Baodong Mao,Weiqiang Fan,Wei Gu,Weidong Shi
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:338: 137-146 被引量:281
标识
DOI:10.1016/j.cej.2017.12.108
摘要

The elimination of recalcitrant pollutants from wastewater using core/shell structure photocatalysts has received much attention in the area of environmental science. In this study, novel β-Bi2O3@g-C3N4 core/shell nanocomposites were firstly fabricated via a feasible self-assembly methodology, in which β-Bi2O3 nanoparticles were chosen as the host material for g-C3N4 loading. The photocatalytic activity of the samples were evaluated by the degradation of antibiotic tetracycline (TC) under visible-light illumination (λ > 420 nm). Compared to the pristine β-Bi2O3 and g-C3N4, the prepared core/shell nanocomposites showed remarkably enhanced photocatalytic performance towards TC degradation in aqueous solution. Eventually, the 5 wt% g-C3N4 loaded core/shell sample (5%[email protected]) exhibited the optimum photocatalytic efficiency, and its rate constant (k = 0.0311 min−1) for TC degradation is much higher than lots of the previously reported photocatalysts. In addition, the as-synthesized 5%[email protected] also displayed excellent photostability for degradation of TC even after 5 times recycling tests. The highly visible-light-induced photoreactivity is ascribed to the formation of a core/shell Z-scheme heterojunction, which could significantly accelerate the separation of photoinduced electron-hole pairs and prolong the lifetime of charge carriers. This work provides an efficient core/shell nanomaterial for removal of antibiotic pollutants and will be useful for design of other core/shell photocatalysts.
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