Cation Ordering and Exsolution in Copper‐Containing Forms of the Flexible Zeolite Rho (Cu,M‐Rho; M=H, Na) and Their Consequences for CO 2 Adsorption

Author:

Lozinska Magdalena M.1ORCID,Jamieson Sophie1,Verbraeken Maarten C.2ORCID,Miller David N.1ORCID,Bode Bela E.1ORCID,Murray Claire A.3ORCID,Brandani Stefano2ORCID,Wright Paul A.1ORCID

Affiliation:

1. EaStCHEM School of Chemistry University of St. Andrews Purdie Building, North Haugh St Andrews, Fife KY16 9ST UK

2. School of Engineering University of Edinburgh The King's Buildings Robert Stevenson Road Edinburgh EH9 3FB UK

3. Diamond Light Source Ltd. Harwell Science and Innovation Campus Didcot, Oxfordshire OX11 0DE UK

Funder

Engineering and Physical Sciences Research Council

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

Reference55 articles.

1. Air separation sorbents: Mixed-cation zeolites with minimum lithium and silver

2. Mixed-cation LiCa-LSX zeolite with minimum lithium for air separation

3. Purification of Hydrogen by Pressure Swing Adsorption

4. S. J. Bhadra R. D. Whitley W. J. Casteel J. T. C. Golden G. C.-H. Lau E. M. Sorensen R. Quinn M. M. Lozinska P. A. Wright M. A. Kalbassi Processes Using Improved RHO Adsorbent Compositions2019 US 10 343 139 B2.

5. New Insights on CO2−Methane Separation Using LTA Zeolites with Different Si/Al Ratios and a First Comparison with MOFs

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