Issue 10, 2021

An ultra-stable hafnium phosphonate MOF platform for comparing the proton conductivity of various guest molecules/ions

Abstract

A porous hafnium-phosphonate MOF was synthesized using imidazole ionic liquids (ILs), namely PHOS-100(Hf), which has exceptional chemical stability in aqueous environments, even fuming acids. Its rigid framework with permanent porosity makes PHOS-100 an ideal candidate as a platform to fill with different functional guests such as acidic HCl, H2SO4, or H3PO4. The as-synthesized ILs@PHOS-100 exhibits significant humidity-dependent proton conductivities, increasing by four orders of magnitude from 45% RH to 95% RH at 25 °C. After post-treatment with strong acids, the acids@PHOS-100 show enhanced proton conduction at low relative humidities.

Graphical abstract: An ultra-stable hafnium phosphonate MOF platform for comparing the proton conductivity of various guest molecules/ions

Supplementary files

Article information

Article type
Communication
Submitted
09 Nov 2020
Accepted
18 Dec 2020
First published
21 Dec 2020

Chem. Commun., 2021,57, 1238-1241

An ultra-stable hafnium phosphonate MOF platform for comparing the proton conductivity of various guest molecules/ions

Y. Huang, F. Zhou, J. Feng, H. Zhao, C. Qi, J. Ji, S. Bao and T. Zheng, Chem. Commun., 2021, 57, 1238 DOI: 10.1039/D0CC07375J

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