TOPOLOGICAL MODEL FOR THE COMPARED ACIDITY OF SAPOS AND SIAL ZEOLITES

Authors
Citation
D. Barthomeuf, TOPOLOGICAL MODEL FOR THE COMPARED ACIDITY OF SAPOS AND SIAL ZEOLITES, Zeolites, 14(6), 1994, pp. 394-401
Citations number
43
Categorie Soggetti
Chemistry Physical
Journal title
ISSN journal
01442449
Volume
14
Issue
6
Year of publication
1994
Pages
394 - 401
Database
ISI
SICI code
0144-2449(1994)14:6<394:TMFTCA>2.0.ZU;2-D
Abstract
For both SiAl zeolites and SAPOs, the protons belong to bridging hydro xyls in the Si-OH-Al, species. To make a comparison possible, the acid sites are described by the environment of Si atoms in such a moiety. It is shown that in SiAl zeolites and in SAPOs, the occupation by Al, Si, or P of the first and second shell of tetrahedra around a central Si atom governs the acid strength through the electronegativity of ato ms and the connectivity of tetrahedras. In SAPOs, the strength of acid ity increases first, as the first layer contains more Si, and, second, as the second layer is richer in P. Since Si-O-P bonds are, not likel y, the addition of Si above an upper limit depending on the structure type tends to generate siliceous islands. This increases the acid stre ngth by forming Si (nAl) species, with n < 4, at the border of the isl ands. The number of species and the value of n depend on the size of t he islands, itself directly related to the Si content and to the conne ctivity of tetrahedra, i.e., to the topology of the structure. The for mation of pure Si islands decreases the expected number of protons per Si. A correlation is described in both SiAl zeolites and SAPOs betwee n the ranking of acid strengths and the chemical shift of Si-29 in MAS n.m.r. when the type and number of first and second neighbors (Al, Si , or P) is changing.