Preparation and formation mechanism of nano-sized MnOx–CeO2 hollow spheres via a supercritical anti-solvent technique
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference23 articles.
1. MnOx−CeO2 Binary Oxides for Catalytic NOx Sorption at Low Temperatures. Sorptive Removal of NOx
2. MnOx−CeO2 Binary Oxides for Catalytic NOx-Sorption at Low Temperatures. Selective Reduction of Sorbed NOx
3. Solid–gas interaction of nitrogen oxide adsorbed on MnOx–CeO2: a DRIFTS study
4. A superior catalyst for low-temperature NO reduction with NH3
5. Selective reduction of NO by NH3 over manganese–cerium mixed oxides: Relation between adsorption, redox and catalytic behavior
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1. Generation of high-porosity cerium oxide nanoparticles and their functionalization with caryophyllene oxide using supercritical carbon dioxide;The Journal of Supercritical Fluids;2023-05
2. Retarding SO2 poisoning effect and expanding detection range via changing the sulfate content in Mn/Ce composite oxides sensing electrode of mixed-potential type SO2 sensor;Sensors and Actuators B: Chemical;2023-02
3. Supercritical fluids in chemistry;Russian Chemical Reviews;2020-12
4. Perspective Preparation Approaches of Nanocrystalline Ceria: Review;Inorganic Materials: Applied Research;2019-01
5. Hollow nano-particles formation for CuO-CeO2-ZrO2 via a supercritical anti-solvent process;Journal of Rare Earths;2016-11
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