Issue 18, 2023

A database to select affordable MOFs for volumetric hydrogen cryoadsorption considering the cost of their linkers

Abstract

Physical adsorption at cryogenic temperature (cryoadsorption) is a reversible mechanism that can reduce the pressure of conventional compressed gas storage systems. Metal–organic framework (MOF) materials are remarkable candidates due to the combination of high specific surface area and density which, in some cases, provide a high volumetric storage capacity. However, such extensive use of MOFs for this application requires the selection of affordable structures, easy to produce and made from feasible metallic and organic components. Herein, we introduce a MOF database detailing the crystallographic and porous properties of 3600 existing MOFs made from industrially relevant metals and their organic composition. The comparison of the available minimum costs of linkers allowed the creation of a database to select affordable structures with high potential for volumetric hydrogen storage by cryoadsorption, considering their composition based on individual or mixed building blocks. A user interface, available online, facilitates the selection of MOFs based on the properties or names of structures and linkers.

Graphical abstract: A database to select affordable MOFs for volumetric hydrogen cryoadsorption considering the cost of their linkers

Supplementary files

Article information

Article type
Paper
Submitted
20 Jun 2023
Accepted
16 Aug 2023
First published
22 Aug 2023
This article is Open Access
Creative Commons BY license

Mater. Adv., 2023,4, 4226-4237

A database to select affordable MOFs for volumetric hydrogen cryoadsorption considering the cost of their linkers

J. A. Villajos, M. Bienert, N. Gugin, F. Emmerling and M. Maiwald, Mater. Adv., 2023, 4, 4226 DOI: 10.1039/D3MA00315A

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