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Water Modulated Framework Flexibility in NH2-MIL-125: Highlights from 13C Nuclear Magnetic Resonance Full article

Conference The 5th International Symposium on Innovative Materials and Processes in Energy Systems
20-23 Oct 2019 , Kanazawa
Journal Heat Transfer Engineering
ISSN: 0145-7632 , E-ISSN: 1521-0537
Output data Year: 2022, Volume: 43, Number: 19, Pages: 1664-1674 Pages count : 11 DOI: 10.1080/01457632.2021.2000753
Tags metal-organic frameworks; negative thermal-expansion; heat transformation; NMR-spectroscopy; self-diffusion; adsorption; dynamics; MOF; separation; relaxation
Authors Pizzanelli Silvia 1 , Freni Angelo 1 , Gordeeva Larisa G. 2,3 , Forte Claudia 1
Affiliations
1 Institute of the Chemistry of Organometallic Compounds, CNR-ICCOM, Pisa, Italy
2 Boreskov Institute of Catalysis, Novosibirsk, Russia
3 Novosibirsk State University, Novosibirsk, Russia

Funding (2)

1 Russian Foundation for Basic Research 18-29-04033
2 Tuscany Region 2014-2020 FELIX project

Abstract: The influence of adsorbed water on the dynamics of the organic linker 1,4-benzenedicarboxylate (BDC) in the metal organic framework NH2-MIL-125 was examined by applying 13C Nuclear Magnetic Resonance (NMR) spectroscopy on samples loaded with different amounts of water. In particular, the analysis of (i) cross-polarization (CP) 13C Magic Angle Spinning (MAS) NMR spectra in terms of chemical shift and line width of the carbon signals, (ii) variable contact time 13C CP-MAS experiments, and (iii) longitudinal 13C relaxation times indicated that, upon hydration, a dynamic process occurring on the microseconds timescale accelerates. This process could be identified with the rotation of the BDC benzene ring about its C2 axis, with water competing with the carboxylic oxygen for hydrogen bonding with the aminic group. Other motions occurring at frequencies on the order of the 13C Larmor frequency, i.e. 75 MHz, which contribute to the flexibility of the three-dimensional network, were detected, and identified with the twisting, libration and translation of the BDC linker
Cite: Pizzanelli S. , Freni A. , Gordeeva L.G. , Forte C.
Water Modulated Framework Flexibility in NH2-MIL-125: Highlights from 13C Nuclear Magnetic Resonance
Heat Transfer Engineering. 2022. V.43. N19. P.1664-1674. DOI: 10.1080/01457632.2021.2000753 WOS Scopus РИНЦ ANCAN OpenAlex
Dates:
Published online: Nov 11, 2021
Identifiers:
Web of science: WOS:000717870000001
Scopus: 2-s2.0-85119293319
Elibrary: 47527535
Chemical Abstracts: 2021:2509491
Chemical Abstracts (print): 180:42766
OpenAlex: W3214491595
Citing:
DB Citing
Web of science 1
Scopus 1
Elibrary 1
OpenAlex 1
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