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Combining CO2 reduction with propane oxidative dehydrogenation over bimetallic catalysts

Journal Article · · Nature Communications
Abstract not provided
Research Organization:
Advanced Photon Source (APS), Argonne National Laboratory (ANL), Argonne, IL (US)
Sponsoring Organization:
NSF
OSTI ID:
1433694
Journal Information:
Nature Communications, Journal Name: Nature Communications Journal Issue: 1 Vol. 9; ISSN 2041-1723
Publisher:
Nature Publishing Group
Country of Publication:
United States
Language:
ENGLISH

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Cited By (8)

Vibrational Spectroscopic Characterization of Glycerol Reaction Pathways over Metal‐Modified Molybdenum Carbide Surfaces journal October 2019
Enhancing Activity and Reducing Cost for Electrochemical Reduction of CO 2 by Supporting Palladium on Metal Carbides journal April 2019
Escaping undesired gas-phase chemistry: Microwave-driven selectivity enhancement in heterogeneous catalytic reactors journal March 2019
Insights into the role of nanoalloy surface compositions toward catalytic acetone hydrogenation journal January 2018
The effects of bimetallic interactions for CO 2 ‐assisted oxidative dehydrogenation and dry reforming of propane journal June 2019
Net reduction of CO2 via its thermocatalytic and electrocatalytic transformation reactions in standard and hybrid processes journal April 2019
Enhancing Activity and Reducing Cost for Electrochemical Reduction of CO 2 by Supporting Palladium on Metal Carbides journal February 2019
Controlling the Reduction Extent for Metal Catalysts journal May 2019

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