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CO 2 Hydrogenation Catalyzed by Graphene-Based Materials.

Authors :
Mihet, Maria
Dan, Monica
Lazar, Mihaela D.
Source :
Molecules; Jun2022, Vol. 27 Issue 11, p3367-3367, 17p
Publication Year :
2022

Abstract

In the context of an increased interest in the abatement of CO<subscript>2</subscript> emissions generated by industrial activities, CO<subscript>2</subscript> hydrogenation processes show an important potential to be used for the production of valuable compounds (methane, methanol, formic acid, light olefins, aromatics, syngas and/or synthetic fuels), with important benefits for the decarbonization of the energy sector. However, in order to increase the efficiency of the CO<subscript>2</subscript> hydrogenation processes, the selection of active and selective catalysts is of utmost importance. In this context, the interest in graphene-based materials as catalysts for CO<subscript>2</subscript> hydrogenation has significantly increased in the last years. The aim of the present paper is to review and discuss the results published until now on graphene-based materials (graphene oxide, reduced graphene oxide, or N-dopped graphenes) used as metal-free catalysts or as catalytic support for the thermocatalytic hydrogenation of CO<subscript>2</subscript>. The reactions discussed in this paper are CO<subscript>2</subscript> methanation, CO<subscript>2</subscript> hydrogenation to methanol, CO<subscript>2</subscript> transformation into formic acid, CO<subscript>2</subscript> hydrogenation to high hydrocarbons, and syngas production from CO<subscript>2</subscript>. The discussions will focus on the effect of the support on the catalytic process, the involvement of the graphene-based support in the reaction mechanism, or the explanation of the graphene intervention in the hydrogenation process. Most of the papers emphasized the graphene's role in dispersing and stabilizing the metal and/or oxide nanoparticles or in preventing the metal oxidation, but further investigations are needed to elucidate the actual role of graphenes and to propose reaction mechanisms. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
27
Issue :
11
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
157372645
Full Text :
https://doi.org/10.3390/molecules27113367