Abstract
Adsorption and disproportionation of N2O4 on Na-, K-, and Rb-exchanged zeolites X with Si/Al ratio of 1.18 were studied using d. functional theory calcns. with periodic boundary conditions. The stabilization and activation of most of the N2O4 isomers confined in the zeolitic cage does not follow Lewis acidity difference of the extraframework cations. This is also obsd. for the energetics of the N2O4 disproportionation reaction resulting in formation of a space-sepd. NO+NO3- ion pair. The reaction energy increases in the row NaX <RbX <KX. The strength of perturbations and, therefore, the low-frequency shift of the N-O stretching frequency of the adsorbed NO+ cations correlate well with the basicity of the zeolite (RbX > KX > NaX). However, this factor is not the relevant reactivity parameter for the N2O4 disproportionation in the cationic forms of zeolites. The higher activity for the disproportionation as well as the stronger mol. adsorption of N2O4 on RbX and KX zeolites as compared to that on NaX is ascribed to the features analogous to the mol. recognition characteristics of supramol. systems. The steric properties of the zeolite cage and the mobility of the extraframework cations induced by adsorption are essential to shape the optimum configuration of the active site for N2O4 disproportionation.
| Original language | English |
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| Pages (from-to) | 5510-5519 |
| Journal | Journal of Physical Chemistry C |
| Volume | 112 |
| Issue number | 14 |
| DOIs | |
| Publication status | Published - 2008 |