| Literature DB >> 26268428 |
Sharon Mitchell1, Maria Milina1, René Verel1, Manuel Hernández-Rodríguez1, Ana B Pinar2, Lynne B McCusker2, Javier Pérez-Ramírez3.
Abstract
A literature survey reveals a prominent reduction in the concentration of Brønsted acid sites in hierarchically organized zeolites with increasing mesoporous or external surface area independent of the framework type or synthesis route; this suggests a common fundamental explanation. To determine the cause, nature, and impact of the underlying changes in aluminum speciation, this study combines a multitechnique analysis that integrates basic characterization, a detailed synchrotron XRD and multiple-quantum NMR spectroscopy assessment, and catalytic tests to correlate evolution of the properties with performance during successive steps in the preparation of hierarchical MFI-type zeolites by desilication. The findings, subsequently generalized to FAU- and BEA-type materials, identify the crucial impact of calcination on the protonic form, which is an integral step in the synthesis and regeneration of zeolite catalysts; on aluminum coordination; and the associated acidity trends.Entities:
Keywords: acidity; aluminum; mesoporous materials; synthesis design; zeolites
Year: 2015 PMID: 26268428 DOI: 10.1002/chem.201500992
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236