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Observation of Binding and Rotation of Methane and Hydrogen within a Functional Metal-Organic Framework.

Authors :
Savage M
da Silva I
Johnson M
Carter JH
Newby R
Suyetin M
Besley E
Manuel P
Rudić S
Fitch AN
Murray C
David WI
Yang S
Schröder M
Source :
Journal of the American Chemical Society [J Am Chem Soc] 2016 Jul 27; Vol. 138 (29), pp. 9119-27. Date of Electronic Publication: 2016 Jul 13.
Publication Year :
2016

Abstract

The key requirement for a portable store of natural gas is to maximize the amount of gas within the smallest possible space. The packing of methane (CH4) in a given storage medium at the highest possible density is, therefore, a highly desirable but challenging target. We report a microporous hydroxyl-decorated material, MFM-300(In) (MFM = Manchester Framework Material, replacing the NOTT designation), which displays a high volumetric uptake of 202 v/v at 298 K and 35 bar for CH4 and 488 v/v at 77 K and 20 bar for H2. Direct observation and quantification of the location, binding, and rotational modes of adsorbed CH4 and H2 molecules within this host have been achieved, using neutron diffraction and inelastic neutron scattering experiments, coupled with density functional theory (DFT) modeling. These complementary techniques reveal a very efficient packing of H2 and CH4 molecules within MFM-300(In), reminiscent of the condensed gas in pure component crystalline solids. We also report here, for the first time, the experimental observation of a direct binding interaction between adsorbed CH4 molecules and the hydroxyl groups within the pore of a material. This is different from the arrangement found in CH4/water clathrates, the CH4 store of nature.

Details

Language :
English
ISSN :
1520-5126
Volume :
138
Issue :
29
Database :
MEDLINE
Journal :
Journal of the American Chemical Society
Publication Type :
Academic Journal
Accession number :
27410670
Full Text :
https://doi.org/10.1021/jacs.6b01323