Approaching full-range selectivity control in CO2 hydrogenation to methanol and carbon monoxide with catalyst composition regulation
Author:
Affiliation:
1. Department of Chemical
2. Biomolecular and Corrosion Engineering
3. The University of Akron
4. Akron
5. USA
Abstract
P-Modified In2O3 with composition regulation for approaching full-range selectivity control in CO2 hydrogenation to methanol and carbon monoxide.
Funder
Ohio Development Services Agency
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2021/QI/D1QI00129A
Reference55 articles.
1. Challenges in the Greener Production of Formates/Formic Acid, Methanol, and DME by Heterogeneously Catalyzed CO2 Hydrogenation Processes
2. Utilisation of CO2 as a chemical feedstock: opportunities and challenges
3. State-of-the-Art Catalysts for Hydrogenation of Carbon Dioxide
4. Catalytic carbon dioxide hydrogenation to methanol: A review of recent studies
5. Active sites for CO 2 hydrogenation to methanol on Cu/ZnO catalysts
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1. Antiover-Reduction of Ni/In2O3 Nanocatalysts by Atomic Layer Deposition of Al2O3 Films for Durable CO2 Hydrogenation to Methanol;ACS Catalysis;2024-05-16
2. CO2 hydrogenation to methanol over hydrothermally synthesized Inx-Zry catalysts;Molecular Catalysis;2023-03
3. Recent advances in reducible metal oxide catalysts for C1 reactions;Catalysis Science & Technology;2023
4. Cr-Zn/Ni-Containing Nanocomposites as Effective Magnetically Recoverable Catalysts for CO2 Hydrogenation to Methanol: The Role of Metal Doping and Polymer Co-Support;Catalysts;2022-12-20
5. The Co-In2O3 interaction concerning the effect of amorphous Co metal on CO2 hydrogenation to methanol;Journal of CO2 Utilization;2022-11
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