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Article cité :
E. Cohen de Lara , R. Kahn
J. Phys. France, 42 7 (1981) 1029-1038
Citations de cet article :
58 articles
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2
and HD in Zeolites: Quantum Effects at 100 K
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Potential energies for methane adsorption in ion-exchanged ZSM-5 zeolite pore
Tatsuya Yamazaki, Sentaro Ozawa and Yoshisada Ogino Molecular Physics 69 (2) 369 (1990) https://doi.org/10.1080/00268979000100261
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The siting, energetics and mobility of saturated hydrocarbons inside zeolitic cages: methane in zeolite Y
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Spectra of CH4 Adsorbed on an NaZSM-5 Zeolite under Pressures up to 1 MPa
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Potential energy of adsorption in A-type zeolites and adsorption thermodynamic characteristics of noble gases and methane
A.G. Bezus, M. Kočiřík and E.A. Vasilyeva Zeolites 7 (4) 327 (1987) https://doi.org/10.1016/0144-2449(87)90035-2
Nuclear magnetic relaxation measurements concerning the molecular mobility of methane in zeolite NaA
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Self-diffusion coefficient of methane adsorbed in NaA zeolites
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Temperature dependent light induced conductivity changes in hydrogenated amorphous silicon
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