Issue 20, 2024

Synthesis and proton-conductive behaviour of two MOFs with covalently bonded imidazoles in the channels

Abstract

Immobilization of imidazole molecules as proton carriers into MOFs to facilitate proton conduction is a general strategy for developing high proton conductive materials. Herein, we designed two imidazole substituted phthalic acid ligands and constructed two novel MOFs, {[Zr6(OH)16(H3L1)4]Cl8·20H2O}n [Zr-MOF; H3L1 = 2-(1H-imidazol-4-yl) methylaminoterephthalic acid] and {Gd(HCOO)(H2L2)2}n [Gd-MOF; H3L2 = 5-(1H-imidazol-4-yl)methylaminoisophthalic acid] and fully studied their porous nature, stability and water-assisted proton conduction. The resulting Zr-MOF exhibits a high proton conductivity of 1.82 × 10−2 S cm−1 at 98% RH and 80 °C, while Gd-MOF has a proton conductivity of 3.01 × 10−3 S cm−1 at 98% RH and 60 °C.

Graphical abstract: Synthesis and proton-conductive behaviour of two MOFs with covalently bonded imidazoles in the channels

Supplementary files

Article information

Article type
Paper
Submitted
26 Dec 2023
Accepted
15 Apr 2024
First published
25 Apr 2024

Dalton Trans., 2024,53, 8716-8721

Synthesis and proton-conductive behaviour of two MOFs with covalently bonded imidazoles in the channels

K. Chen, Y. Ma, H. Ren, C. Zhang and Q. Wang, Dalton Trans., 2024, 53, 8716 DOI: 10.1039/D3DT04338J

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