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Paper | Open Access

Room-temperature rapid synthesis of hierarchically porous ZIF-93 for effective adsorption of volatile organic compounds

Haiqi ZhangaKaikai ZhaoaWeibiao GuoaKuan LiangaJingjing LiaXu LidQianjun DengaXuejun XuaHuixia ChaocHongxia Xib ( )Chongxiong Duana ( )
School of Materials and Energy, Foshan University, Foshan, 528231, P. R. China
School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510640, P. R. China
Guangxi Key Laboratory of Green Chemical Materials and Safety Technology, College of Petroleum and Chemical Engineering, Beibu Gulf University, Qinzhou, 535011, P. R. China
Key Laboratory of Nuclear Solid-State Physics Hubei Province, School of Physics and Technology, Wuhan University, Wuhan 430072, P. R. China
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Abstract

Facile synthesis conditions, abundant hierarchical porosity, and high space–time yields (STYs) are prerequisites for the commercial application of zeolitic imidazolate frameworks (ZIFs). However, these prerequisites are rarely achieved simultaneously. Herein, a green and versatile strategy to rapidly synthesize hierarchically porous ZIFs (HP-ZIFs) was developed using an alkali as a deprotonating agent. The synthesis conditions were room temperature and ambient pressure in an aqueous solution, and the synthesis time could be reduced to 1 min. The produced HP-ZIFs had hierarchically porous structures with mesopores and macropores interconnected with micropores. The STY for HP-ZIFs was up to 9670 kg m−3 d−1, at least 712 times the previously reported values. In addition, the porosity and morphology of the produced HP-ZIFs could be fine-tuned by controlling the synthesis parameters (e.g., reaction time, molar ratios, metal source, and alkali source). Compared with conventional ZIFs, the adsorption performance of the as-synthesized HP-ZIFs for p-xylene and n-hexane was significantly improved. Positron annihilation lifetime spectroscopy (PALS) was utilized to study the pore properties, and the adsorption behavior of HP-ZIFs on guest molecules was investigated using density functional theory (DFT) simulations. This strategy shows significant promise for the large-scale industrial production of desirable HP-ZIFs for adsorption applications.

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Industrial Chemistry & Materials
Pages 109-121

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Cite this article:
Zhang H, Zhao K, Guo W, et al. Room-temperature rapid synthesis of hierarchically porous ZIF-93 for effective adsorption of volatile organic compounds. Industrial Chemistry & Materials, 2025, 3(1): 109-121. https://doi.org/10.1039/d4im00033a

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Received: 29 March 2024
Accepted: 03 July 2024
Published: 04 July 2024
© 2025 The Author(s). Co‐published by the Institute of Process Engineering, Chinese Academy of Sciences and the Royal Society of Chemistry

This article is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported Licence.