» Articles » PMID: 32196036

Transformation of a Proton Insulator to a Conductor Via Reversible Amorphous to Crystalline Structure Transformation of MOFs

Overview
Specialty Chemistry
Date 2020 Mar 21
PMID 32196036
Citations 2
Authors
Affiliations
Soon will be listed here.
Abstract

In this study, a successful proton conduction modulation of MOFs, from an ionic insulator to an ionic conductor, is demonstrated through their structural transformation. It is shown that the reversible structural change from amorphous to crystalline phases allows for the reversible proton conduction modulation of MOFs. Moreover, the proton conduction mechanism of the ionic conductor phase is elucidated by H NMR analysis.

Citing Articles

Water Vapor Adsorption on CAU-10-: Effect of Functional Groups on Adsorption Equilibrium and Mechanisms.

Solovyeva M, Shkatulov A, Gordeeva L, Fedorova E, Krieger T, Aristov Y Langmuir. 2021; 37(2):693-702.

PMID: 33412006 PMC: 7880571. DOI: 10.1021/acs.langmuir.0c02729.


Recent advances in process engineering and upcoming applications of metal-organic frameworks.

Ryu U, Jee S, Rao P, Shin J, Ko C, Yoon M Coord Chem Rev. 2020; 426:213544.

PMID: 32981945 PMC: 7500364. DOI: 10.1016/j.ccr.2020.213544.