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Electron beam and thermal stabilities of MFM-300(M) metal–organic frameworks.

Authors :
Tien, Eu-Pin
Cao, Guanhai
Chen, Yinlin
Clark, Nick
Tillotson, Evan
Ngo, Duc-The
Carter, Joseph H.
Thompson, Stephen P.
Tang, Chiu C.
Allen, Christopher S.
Yang, Sihai
Schröder, Martin
Haigh, Sarah J.
Source :
Journal of Materials Chemistry A; 9/28/2024, Vol. 12 Issue 36, p24165-24174, 10p
Publication Year :
2024

Abstract

This work reports the thermal and electron beam stabilities of a series of isostructural metal–organic frameworks (MOFs) of type MFM-300(M) (M = Al, Ga, In, Cr). MFM-300(Cr) was most stable under the electron beam, having an unusually high critical electron fluence of 1111 e<superscript>−</superscript> Å<superscript>−2</superscript> while the Group 13 element MOFs were found to be less stable. Within Group 13, MFM-300(Al) had the highest critical electron fluence of 330 e<superscript>−</superscript> Å<superscript>−2</superscript>, compared to 189 e<superscript>−</superscript> Å<superscript>−2</superscript> and 147 e<superscript>−</superscript> Å<superscript>−2</superscript> for the Ga and In MOFs, respectively. For all four MOFs, electron beam-induced structural degradation was independent of crystal size and was highly anisotropic, although both the length and width of the channels decreased during electron beam irradiation. Notably, MFM-300(Cr) was found to retain crystallinity while shrinking up to 10%. Thermal stability was studied using in situ synchrotron X-ray diffraction at elevated temperature, which revealed critical temperatures for crystal degradation to be 605, 570, 490 and 480 °C for Al, Cr, Ga, and In, respectively. The pore channel diameters contracted by ≈0.5% on desorption of solvent species, but thermal degradation at higher temperatures was isotropic. The observed electron stabilities were found to scale with the relative inertness of the cations and correlate well to the measured lifetime of the materials when used as photocatalysts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507488
Volume :
12
Issue :
36
Database :
Complementary Index
Journal :
Journal of Materials Chemistry A
Publication Type :
Academic Journal
Accession number :
179713170
Full Text :
https://doi.org/10.1039/d4ta03302g