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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 2011

Pressure enhancement in carbon nanopores: a major confinement effect

Résumé

Phenomena that occur only at high pressures in bulk phases are often observed in nanopores, suggesting that the pressure in such confined phases is large. We report a molecular simulation study of the pressure tensor of an argon nanophase within slit-shaped carbon pores and show that the tangential pressure is positive and large, while the normal pressure can be positive or negative depending on pore width. We also show that small changes in the bulk pressure have a large effect on the tangential pressure, suggesting that it should be possible to control the latter over wide ranges in laboratory experiments.

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Matériaux
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Dates et versions

hal-00644784 , version 1 (25-11-2011)

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Citer

Yun Long, Jeremy C. Palmer, Benoit Coasne, Malgorzata Sliwinska-Bartkowiak, Keith E. Gubbins. Pressure enhancement in carbon nanopores: a major confinement effect. Physical Chemistry Chemical Physics, 2011, 13, pp.17163-17170. ⟨10.1039/c1cp21407a⟩. ⟨hal-00644784⟩
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