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具有互穿一维/二维网络结构的异形BiWO薄膜的合成用于挥发性有机化合物的高效稳定光催化降解

Synthesis of Heteromorphic BiWO Films With an Interpenetrate 1D/2D Network Structure for Efficient and Stable Photocatalytic Degradation of VOCs.

作者信息

Chen Yuehui, Zhang Liang, Chen Shuo, Sun Songmei, Cheng Hui, Li Shouzhu, Yu Jianyong, Ding Bin, Yan Jianhua

机构信息

Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai, 201620, China.

College of Environmental Science and Engineering, Donghua University, Shanghai, 201620, China.

出版信息

Adv Mater. 2024 Oct;36(40):e2407400. doi: 10.1002/adma.202407400. Epub 2024 Aug 21.

DOI:10.1002/adma.202407400
PMID:39167274
Abstract

2D layered BiWO (BWO) is a widely used attractive photocatalyst for degrading VOCs, but the low visible-light utilization and the easy stacking 2D nanosheets (NSs) limit photocatalysis efficiency and stability. Here, inspired by Eucalyptus, a synergistic strategy of multiscale domain-confinement and electrostatic force action, based on electrospinning is proposed, for fabricating a heteromorphic BWO photocatalyst. It is found that BWO NSs can grow radially in an orderly spaced arrangement along BWO nanofibers (NFs) during sintering, thereby forming 1D/2D BWO junctions like eucalyptus leaves. This interpenetrating 1D/2D network structure not only solves the easy stacking problem of BWO NSs but also selectively exposes the {010} crystal planes that exhibit efficient hole oxidation. In addition, this peculiar structure enriches electrons at the 1D/2D interface to avoid carrier recombination, thus improving the photocatalytic activity. The photocatalyst material with a reduced bandgap width from 2.56 to 2.49 eV can rapidly degrade 100% of acetaldehyde under visible light without using sacrificial agents and photosensitizers and shows superior stability for eight cycles without any decay. This study provides a feasible method to synthesize an efficient and stable BWO photocatalyst.

摘要

二维层状BiWO(BWO)是一种广泛应用的、具有吸引力的用于降解挥发性有机化合物的光催化剂,但其可见光利用率低以及二维纳米片(NSs)易于堆叠的特性限制了光催化效率和稳定性。在此,受桉树叶启发,提出了一种基于静电纺丝的多尺度域限制和静电力作用的协同策略,用于制备异质结构的BWO光催化剂。研究发现,在烧结过程中,BWO纳米片可以沿着BWO纳米纤维(NFs)以有序间隔排列的方式径向生长,从而形成类似桉树叶的一维/二维BWO结。这种相互贯穿的一维/二维网络结构不仅解决了BWO纳米片易于堆叠的问题,还选择性地暴露了表现出高效空穴氧化的{010}晶面。此外,这种特殊结构在一维/二维界面处富集电子以避免载流子复合,从而提高了光催化活性。带隙宽度从2.56 eV降低到2.49 eV的光催化剂材料在可见光下无需使用牺牲剂和光敏剂即可快速降解100%的乙醛,并且在八个循环中表现出优异的稳定性,没有任何衰减。该研究为合成高效稳定的BWO光催化剂提供了一种可行的方法。

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