Characterization of guest molecules sorbed in zeolites of known structure. Part VI — Localization of methanol at several pore fillings in a highly siliceous MFI silicalite material
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference20 articles.
1. Characterization of guest molecules adsorbed on zeolites of known structure by combined X-ray powder profile refinements and conventional difference-Fourier techniques. Part I — Localization of the benzene molecule in a pentasil type zeolite
2. Characterization of guest molecules adsorbed on zeolites of known structure by combined x-ray powder profile refinements and conventional difference-fourier techniques. Part II - Localization of the n-hexane, TPA and p-xylene guests in a pentasil type zeolite
3. Characterization of guest molecules adsorbed on zeolites of known structure. Part III-Localization of the p-XYLI and p-XYLII species sorbed in a high coverage complex
4. Characterization of guest molecules sorbed in zeolites of known structure. Part IV — Localization of para-disubstituted benzene molecules at low sorbate-fillings in a zsm-5 material ()
5. Characterization of guest molecules sorbed in zeolites of known structure. Part V - Localization of para-dichlorobenzene in mfi materials at medium and higher loadings
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1. Case Studies: Crystallography as a Tool for Studying Methanol Conversion in Zeolites;Springer Handbook of Advanced Catalyst Characterization;2023
2. A review of adsorbate and temperature-induced zeolite framework flexibility;Microporous and Mesoporous Materials;2017-02
3. The fast Z-scan method for studying working catalytic reactors with high energy X-ray diffraction: ZSM-5 in the methanol to gasoline process;Phys. Chem. Chem. Phys.;2013-03-18
4. A new method for measuring the adsorption induced stresses of zeolite films using magnetoelastic sensors;Journal of Membrane Science;2012-02
5. The adsorption of methanol and water on SAPO-34: in situ and ex situ X-ray diffraction studies;Microporous and Mesoporous Materials;2010-10
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