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CIT-7, a crystalline, molecular sieve with pores bounded by 8 and 10-membered rings†
Joel E. Schmidt,Dan Xie,Thomas Rea,Mark E. Davis
Chemical Science Pub Date : 01/23/2015 00:00:00 , DOI:10.1039/C4SC03935A
Abstract

A new crystalline molecular sieve, denoted CIT-7, is synthesized using an imidazolium-based diquaternary organic structure directing agent (OSDA). The framework structure is determined from a combination of rotation electron diffraction and synchrotron X-ray powder diffraction data. The structure has 10 crystallographically unique tetrahedral atoms (T-atoms) in the unit cell, and can be described as an ordered arrangement of the [425462] mtw building unit and a previously unreported [4452] building unit. The framework contains a 2-dimensional pore system that is bounded by 10 T-atom rings (10-ring, 5.1 Å × 6.2 Å opening) that are connected with oval 8-rings (2.9 Å × 5.5 Å opening) through medium-sized cavities (∼7.9 Å) at the channel intersections. CIT-7 can be synthesized over a broad range of compositions including pure-silica and heteroatom, e.g., aluminosilicate and titanosilicate, containing variants.

Graphical abstract: CIT-7, a crystalline, molecular sieve with pores bounded by 8 and 10-membered rings
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