Construction of mixed-dimensional metal-organic frameworks-based heterojunction with enhanced carrier separation for tetracycline degradation by photocatalytic activation of PMS

IF 4 2区 化学 Q2 CHEMISTRY, PHYSICAL
Weinan Xing , Huage Lin , Jinfeng Yang , Xusheng Xu , Jiangang Han , Guangyu Wu
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引用次数: 0

Abstract

Metal - organic frameworks (MOFs), which are regarded as a type of materials possessing semiconductor - like characteristics, have been widely applied in the realm of photocatalysis. However, their restricted capacity to absorb visible light and the inefficiency of charge carrier separation severely impede their catalytic efficacy. In this research, we put forward a novel approach to fabricating a mixed - dimensional CoS/MIL - 68(In) heterojunction photocatalyst. This is accomplished by attaching two - dimensional CoS nanosheets to three - dimensional MIL - 68(In) MOF nanotubes. This sophisticated catalyst exhibited outstanding performance in the photocatalytic degradation of tetracycline with the aid of peroxymonosulfate. It attained a remarkable degradation rate of 94.4 % within 40 min. The uniformly distributed CoS nanosheets, characterized by their small dimensions, have established numerous robust interfacial contacts with the MIL - 68(In) framework, which substantially enhances the charge transfer efficiency. Experimental findings have confirmed that the CoS/MIL - 68(In) heterojunction exhibits enhanced photoresponse and facilitates efficient charge - carrier separation and mobility. This work provides a new perspective on the exploration of high - efficiency MOFs - based materials for the removal of persistent organic contaminants and other practical environmental applications.

Abstract Image

构建基于混合维金属有机框架的异质结,通过光催化活化 PMS 增强载流子分离,降解四环素
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来源期刊
Journal of Molecular Structure
Journal of Molecular Structure 化学-物理化学
CiteScore
7.10
自引率
15.80%
发文量
2384
审稿时长
45 days
期刊介绍: The Journal of Molecular Structure is dedicated to the publication of full-length articles and review papers, providing important new structural information on all types of chemical species including: • Stable and unstable molecules in all types of environments (vapour, molecular beam, liquid, solution, liquid crystal, solid state, matrix-isolated, surface-absorbed etc.) • Chemical intermediates • Molecules in excited states • Biological molecules • Polymers. The methods used may include any combination of spectroscopic and non-spectroscopic techniques, for example: • Infrared spectroscopy (mid, far, near) • Raman spectroscopy and non-linear Raman methods (CARS, etc.) • Electronic absorption spectroscopy • Optical rotatory dispersion and circular dichroism • Fluorescence and phosphorescence techniques • Electron spectroscopies (PES, XPS), EXAFS, etc. • Microwave spectroscopy • Electron diffraction • NMR and ESR spectroscopies • Mössbauer spectroscopy • X-ray crystallography • Charge Density Analyses • Computational Studies (supplementing experimental methods) We encourage publications combining theoretical and experimental approaches. The structural insights gained by the studies should be correlated with the properties, activity and/ or reactivity of the molecule under investigation and the relevance of this molecule and its implications should be discussed.
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