Authors
Steven M Kuznicki, Valerie A Bell, Sankar Nair, Hugh W Hillhouse, Richard M Jacubinas, Carola M Braunbarth, Brian H Toby, Michael Tsapatsis
Publication date
2001/8/16
Journal
Nature
Volume
412
Issue
6848
Pages
720-724
Publisher
Nature Publishing Group UK
Description
Zeolites and related crystalline microporous oxides—tetrahedrally coordinated atoms covalently linked into a porous framework—are of interest for applications ranging from catalysis to adsorption and ion-exchange. In some of these materials (such as zeolite rho) adsorbates, ion-exchange, and dehydration and cation relocation, can induce strong framework deformations. Similar framework flexibility has to date not been seen in mixed octahedral/tetrahedral microporous framework materials, a newer and rapidly expanding class of molecular sieves,,,,,,,,,,,. Here we show that the framework of the titanium silicate ETS-4, the first member of this class of materials, can be systematically contracted through dehydration at elevated temperatures to ‘tune’ the effective size of the pores giving access to the interior of the crystal. We show that this so-called ‘molecular gate’ effect can be used to tailor the adsorption properties of …
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