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The "template" effect of the extra-framework content on zeolite compression: The case of yugawaralite

Academic Article
Publication Date:
2005
abstract:
The microscopic behavior of the Ca-zeolite yugawaralite has been studied by ab initio molecular dynamics simulations adopting experimental cell parameters obtained at pressures up to similar to9 GPa. Pressure-induced volume contraction occurs via rotations of quasi-rigid TO, tetrahedra that reduce the size of the channels in which the extra-framework species are located. Such rotations are governed by deformation of the coordination polyhedron of Ca, which is made up of water and framework O atoms. Contraction of the Ca-H2O distances is favored at moderate pressure; at higher pressure the shortening of Ca-framework O atom distances becomes prevalent. The hydrogen bond network plays a fundamental role in the overall response to pressure. Our results indicate that the high-P-induced deformation of the framework structure is strictly correlated to the extra-framework species that act as "templates" in the compression process.
Iris type:
Articolo su Rivista
Keywords:
zeolites; high-pressure; pressure induced structural modifications; first principles MOLECULAR-DYNAMICS; framework; yugawaralite; water; density functional theory; dft calculations
List of contributors:
Fois, ETTORE SILVESTRO; Gamba, Aldo; Tabacchi, Gloria; Arletti, R; Quartieri, S; Vezzalini, G.
Authors of the University:
FOIS ETTORE SILVESTRO
TABACCHI GLORIA
Handle:
https://irinsubria.uninsubria.it/handle/11383/1708398
Published in:
AMERICAN MINERALOGIST
Journal
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