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Sodalite, methanol adsorption

Shah and coworkers also studied methanol adsorption in sodalite and, in contrast to the case of chabazite, the HB complex with two hydrogen bonds between the methanol and the zeolite lattice was found to represent the mini-... [Pg.209]

The question of methanol protonation was revisited by Shah et al. (237, 238), who used first-principles calculations to study the adsorption of methanol in chabazite and sodalite. The computational demands of this technique are such that only the most symmetrical zeolite lattices are accessible at present, but this limitation is sure to change in the future. Pseudopotentials were used to model the core electrons, verified by reproduction of the lattice parameter of a-quartz and the gas-phase geometry of methanol. In chabazite, methanol was found to be adsorbed in the 8-ring channel of the structure. The optimized structure corresponds to the ion-paired complex, previously designated as a saddle point on the basis of cluster calculations. No stable minimum was found corresponding to the neutral complex. Shah et al. (237) concluded that any barrier to protonation is more than compensated for by the electrostatic potential within the 8-ring. [Pg.91]


See other pages where Sodalite, methanol adsorption is mentioned: [Pg.210]    [Pg.213]    [Pg.303]    [Pg.57]    [Pg.159]    [Pg.3262]    [Pg.262]   
See also in sourсe #XX -- [ Pg.42 , Pg.91 ]




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