Crystal field-induced lattice expansion upon reversible oxygen uptake/release in YbMnxFe2−xO4
Author:
Affiliation:
1. Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742-2115, USA
2. Maryland Quantum Materials Center, University of Maryland, College Park, Maryland 20742, USA
Abstract
Funder
National Institute of Standards and Technology
U.S. Department of Energy
Publisher
Royal Society of Chemistry (RSC)
Subject
General Materials Science,Chemistry (miscellaneous)
Link
http://pubs.rsc.org/en/content/articlepdf/2022/MA/D1MA00822F
Reference65 articles.
1. Oxygen separation from air by the combined temperature swing and pressure swing processes using oxygen storage materials Y1−x(Tb/Ce)xMnO3+δ
2. Perovskite oxides for application in thermochemical air separation and oxygen storage
3. Redox Behavior of Solid Solutions in the SrFe1-x Cux O3-δ System for Application in Thermochemical Oxygen Storage and Air Separation
4. Highly Efficient Oxygen-Storage Material with Intrinsic Coke Resistance for Chemical Looping Combustion-Based CO2Capture
5. Using an oxygen-carrier as bed material for combustion of biomass in a 12-MWth circulating fluidized-bed boiler
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1. Structural modulation and spin glassiness upon oxidation in oxygen storage material LnFeMnO4+x for Ln = Y, Lu, and Yb;APL Materials;2023-06-01
2. Plasma Surface Modification of 3Y-TZP at Low and Atmospheric Pressures with Different Treatment Times;International Journal of Molecular Sciences;2023-04-21
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