Lewis-Brønsted Acid Pairs in Ga/H-ZSM-5 To Catalyze Dehydrogenation of Light Alkanes.

The active sites for propane dehydrogenation in Ga/H-ZSM-5 with moderate concentrations of tetrahedral aluminum in the lattice were identified to be Lewis -Brønsted acid pairs. With increasing availability, Ga and Brønsted acid site concentrations changed inversely, as protons of Brønsted acid sites...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 140; no. 14; pp. 4849 - 4860
Autores principales: Schreiber, Moritz W., Plaisance, Craig P., Baumgärtl, Martin, Reuter, Karsten, Jentys, Andreas, Bermejo-Deval, Ricardo, Lercher, Johannes A.
Formato: Artículo
Publicado: American Chemical Society 4/11/2018
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:The active sites for propane dehydrogenation in Ga/H-ZSM-5 with moderate concentrations of tetrahedral aluminum in the lattice were identified to be Lewis -Brønsted acid pairs. With increasing availability, Ga and Brønsted acid site concentrations changed inversely, as protons of Brønsted acid sites were exchanged with Ga. At a Ga/Al ratio of 1/2, the rate of propane dehydrogenation was 2 orders of magnitude higher than with the parent H-ZSM-5, highlighting the extraordinary activity of the Lewis-Brønsted acid pairs. Density functional theory calculations relate the high activity to a bifunctional mechanism that proceeds via heterolytic activation of the propane C-H bond followed by a monomolecular elimination of H and desorption of propene.