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タイトル: Fast Gas‐Adsorption Kinetics in Supraparticle‐Based MOF Packings with Hierarchical Porosity
著者: Fujiwara, Atsushi
Wang, Junwei
Hiraide, Shotaro
Götz, Alexander
Miyahara, Minoru T.
Hartmann, Martin
Apeleo Zubiri, Benjamin
Spiecker, Erdmann
Vogel, Nicolas
Watanabe, Satoshi  kyouindb  KAKEN_id  orcid https://orcid.org/0000-0002-5058-4337 (unconfirmed)
著者名の別形: 藤原, 篤史
平出, 翔太郎
宮原, 稔
渡邉, 哲
キーワード: adsorption kinetics
hierarchical porosity
metal–organic frameworks
self-assembly
supraparticles
発行日: 2-Nov-2023
出版者: Wiley
誌名: Advanced Materials
巻: 35
号: 44
論文番号: 2305980
抄録: Metal–organic frameworks (MOFs) are microporous adsorbents for high-throughput gas separation. Such materials exhibit distinct adsorption characteristics owing to the flexibility of the crystal framework in a nanoparticle, which can be different from its bulk crystal. However, for practical applications, such particles need to be compacted into macroscopic pellets, creating mass-transport limitations. In this work, this problem is addressed by forming materials with structural hierarchy, using a supraparticle-based approach. Spherical supraparticles composed of nanosized MOF particles are fabricated by emulsion templating and they are used as the structural component forming a macroscopic material. Zeolitic imidazolate framework-8 (ZIF-8) particles are used as a model system and the gas-adsorption kinetics of the hierarchical material are compared with conventional pellets without structural hierarchy. It is demonstrated that a pellet packed with supraparticles exhibits a 30 times faster adsorption rate compared to an unstructured ZIF-8 powder pellet. These results underline the importance of controlling structural hierarchy to maximize the performance of existing materials. In the hierarchical MOFs, large macropores between the supraparticles, smaller macropores between individual ZIF-8 primary particles, and micropores inherent to the ZIF-8 framework collude to combine large surface area, defined adsorption sites, and efficient mass transport to enhance performance.
著作権等: © 2023 The Authors. Advanced Materials published by Wiley-VCH GmbH
This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
URI: http://hdl.handle.net/2433/286890
DOI(出版社版): 10.1002/adma.202305980
PubMed ID: 37714142
出現コレクション:学術雑誌掲載論文等

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