光催化
钨酸盐
环境友好型
材料科学
铋
化学工程
石墨烯
纳米技术
催化作用
化学
有机化学
冶金
生态学
生物
工程类
作者
Huan Yi,Ming Yan,Danlian Huang,Guangming Zeng,Cui Lai,Minfang Li,Xiuqin Huo,Lei Qin,Shiyu Liu,Xigui Liu,Bisheng Li,Xi Wang,Liguo Shen,Yukui Fu,Xueying Guo
标识
DOI:10.1016/j.apcatb.2019.03.008
摘要
Highly-efficient and eco-friendly materials and technologies are urgently needed to meet the requirements of nowadays green development. Photocatalysis with using solar energy and enzymatic catalysis with eco-friendly nature are effective alternatives to address the problem. Notably, beneficial use of the synergistic effect of artificial enzyme and advanced photocatalyst has attracted wide attention. This work presents a biomimetic photocatalytic material, two-dimensional (2D) biomimetic hemin-bismuth tungstate (HBWO). Stable HBWO composites formed by immobilization of monomeric hemin on 2D bismuth tungstate layer, exhibit high photocatalytic performance, better than that of pure 2D bismuth tungstate and unsupported hemin. HBWO shows layered structure with the interlayer spacing at ˜0.35 nm. In the photocatalytic process, hemin can not only act as an electron shuttle, also play an important role in oxygen transfer. Additionally, the synthesized HBWO composites exhibit nice binding affinities and high photocatalytic activity in tetracycline degradation. It is anticipated that beneficial use of synergistic effect of artificial enzyme and photocatalyst via HBWO composites can be a promising eco-friendly and efficient solution for addressing the environmental crisis.
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