Cage Occupancy and Compressibility of Deuterated N2-Clathrate Hydrate by Neutron Diffraction View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

1997-09

AUTHORS

W.F. Kuhs, B. Chazallon, P.G. Radaelli, F. Pauer

ABSTRACT

This paper reports pressuredependent high resolution neutron diffraction work onN2-clathrates, which for the first time providesnumbers on the compressibility as well as the locationand degree of filling of the guest molecules in thesmall and large cages. N2-clathrates crystallize,at least at lower pressures and temperatures near0 °C, in the Stackelberg type II structure.However, during the diffraction experiments we haveobserved the transient and partial formation of thevon Stackelberg type I N2-clathrate at pressuresexceeding several hundred bar. The filling of thesmall cages in the type II clathrate roughly followsa Langmuir isotherm. In contrast to most previousassumptions there is strong evidence that the largecages are doubly occupied in both type I and type IIN2-clathrates. The observed filling can be fittedreasonably well by a two-constant Langmuir model. More... »

PAGES

65-77

References to SciGraph publications

  • 1986-09. Structure of oxygen clathrate hydrate by neutron powder diffraction in JOURNAL OF INCLUSION PHENOMENA AND MACROCYCLIC CHEMISTRY
  • 1984-09. The ability of small molecules to form clathrate hydrates of structure II in NATURE
  • 1990-01. The crystallographic structure of the natural air-hydrate in Greenland dye-3 deep ice core in JOURNAL OF INCLUSION PHENOMENA AND MACROCYCLIC CHEMISTRY
  • 1982-08. Air hydrate inclusions in fresh ice core in NATURE
  • 1949-11. Feste Gashydrate in THE SCIENCE OF NATURE
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    http://dx.doi.org/10.1023/a:1007960217691

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