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      Well-Defined Copper-Based Nanocatalysts for Selective Electrochemical Reduction of CO 2 to C 2 Products

      1 , 1 , 1
      ACS Energy Letters
      American Chemical Society (ACS)

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          Progress and Perspectives of Electrochemical CO2 Reduction on Copper in Aqueous Electrolyte

          To date, copper is the only heterogeneous catalyst that has shown a propensity to produce valuable hydrocarbons and alcohols, such as ethylene and ethanol, from electrochemical CO2 reduction (CO2R). There are variety of factors that impact CO2R activity and selectivity, including the catalyst surface structure, morphology, composition, the choice of electrolyte ions and pH, and the electrochemical cell design. Many of these factors are often intertwined, which can complicate catalyst discovery and design efforts. Here we take a broad and historical view of these different aspects and their complex interplay in CO2R catalysis on Cu, with the purpose of providing new insights, critical evaluations, and guidance to the field with regard to research directions and best practices. First, we describe the various experimental probes and complementary theoretical methods that have been used to discern the mechanisms by which products are formed, and next we present our current understanding of the complex reaction networks for CO2R on Cu. We then analyze two key methods that have been used in attempts to alter the activity and selectivity of Cu: nanostructuring and the formation of bimetallic electrodes. Finally, we offer some perspectives on the future outlook for electrochemical CO2R.
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            New insights into the electrochemical reduction of carbon dioxide on metallic copper surfaces

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              Electrocatalytic process of CO selectivity in electrochemical reduction of CO2 at metal electrodes in aqueous media

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                Author and article information

                Contributors
                (View ORCID Profile)
                (View ORCID Profile)
                Journal
                ACS Energy Letters
                ACS Energy Lett.
                American Chemical Society (ACS)
                2380-8195
                2380-8195
                April 08 2022
                March 20 2022
                April 08 2022
                : 7
                : 4
                : 1284-1291
                Affiliations
                [1 ]Laboratory of Nanochemistry for Energy, Department of Chemical Sciences and Engineering, École Polytechnique Fédérale de Lausanne, CH-1950 Sion, Switzerland
                Article
                10.1021/acsenergylett.2c00035
                1b2dcc74-1821-4480-8cae-3df8a8bee130
                © 2022

                https://doi.org/10.15223/policy-029

                https://doi.org/10.15223/policy-037

                https://doi.org/10.15223/policy-045

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