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Research Article | Open Access

Homogenous Microporous Thin Films Assembled Using Discrete Metal–Organic Polyhedra

Soyeon Ko1UnJin Ryu2Ho Yeon Yoo3Jeeyoung Shin4Kyung Min Choi1( )Dong Gyu Park5( )Won Ho Choi6 ( )
Department of Chemical and Biological Engineering, Sookmyung Women’s University, Cheongpa-ro 47-gil 100, Seoul 04310, Korea
Industry Collaboration Center, Sookmyung Women’s University, Cheongpa-ro 47-gil 100, Seoul 04310, Korea
Department of Applied Chemistry, Andong National University, Gyeongdong-ro 1533-2, Andong-si 36729, Korea
Department of Mechanical Systems Engineering, Sookmyung Women’s University, Cheongpa-ro 47-gil 100, Seoul 04310, Korea
Institute of Advanced Materials and Systems, Sookmyung Women’s University, Seoul 04310, Korea
Department of Petrochemical Materials, Chonnam National University, 19 Samdong 3-gil, Yeosu-si 59631, Korea
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Abstract

Homogeneous films with tailored microporous structures are crucial for several applications; however, fabricating such films presents significant challenges. This is primarily because most microporous materials have crystal sizes in the nano- and micrometer ranges, which inevitably generates intergranular spaces in the films, thereby complicating the fabrication of these thin films. In this study, functionalized metal–organic polyhedra (MOPs) are used as discrete microporous units and assembled into homogenous microporous films. The generation of intergranular spaces is avoided while controlling packing parameters and film thicknesses. Initially, the MOP units, influenced by van der Waals forces between carbon chains of functionalized adipic acids, display an affinity to form spindle-shaped blocks and islands. As the MOP concentration increases, these structures self-assembled into a hexagonally packed structure with an in-plane orientation and a maximum stacking of two layers of MOPs. By contrast, un-functionalized MOPs form a disordered film structure owing to random agglomeration. Evidently, functionalized adipic acid influences the orientation of the MOP network films with uniformly distributed micropores, effectively preventing the formation of intergranular spaces. Additionally, formaldehyde adsorption and desorption experiments revealed that the MOP network films possess superior adsorption and desorption capacities. The proposed approach signifies a breakthrough in the fabrication of homogenous microporous films.

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Cite this article:
Ko S, Ryu U, Yoo HY, et al. Homogenous Microporous Thin Films Assembled Using Discrete Metal–Organic Polyhedra. Energy & Environmental Materials, 2025, 8(1). https://doi.org/10.1002/eem2.12805

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Received: 07 April 2024
Revised: 23 May 2024
Published: 10 June 2024
© 2024 The Author(s).

This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.