The formation of mesopores in microporous zeolites is generally performed by postsynthesis acid, basic, and steam treatments. The hierarchical pore systems thus formed allowbetter adsorption, diffusion, and reactivity of these materials. By combining organic and inorganic structure-directing agents and high-throughput methodologies, we were able to synthesize a zeolite with a hierarchical system of micropores and mesopores, with channel openings delimited by 28 tetrahedral atoms. Its complex crystalline structure was solved with the use of automated diffraction tomography.

Jiang, J.X., Jorda, J.L., Yu, J.H., Baumes, L.A., Mugnaioli, E., Diaz-Cabanas, M.J., et al. (2011). Synthesis and Structure Determination of the Hierarchical Meso-Microporous Zeolite ITQ-43. SCIENCE, 333(6046), 1131-1134 [10.1126/science.1208652].

Synthesis and Structure Determination of the Hierarchical Meso-Microporous Zeolite ITQ-43

MUGNAIOLI, E.;
2011-01-01

Abstract

The formation of mesopores in microporous zeolites is generally performed by postsynthesis acid, basic, and steam treatments. The hierarchical pore systems thus formed allowbetter adsorption, diffusion, and reactivity of these materials. By combining organic and inorganic structure-directing agents and high-throughput methodologies, we were able to synthesize a zeolite with a hierarchical system of micropores and mesopores, with channel openings delimited by 28 tetrahedral atoms. Its complex crystalline structure was solved with the use of automated diffraction tomography.
2011
Jiang, J.X., Jorda, J.L., Yu, J.H., Baumes, L.A., Mugnaioli, E., Diaz-Cabanas, M.J., et al. (2011). Synthesis and Structure Determination of the Hierarchical Meso-Microporous Zeolite ITQ-43. SCIENCE, 333(6046), 1131-1134 [10.1126/science.1208652].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/841659
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