A Comprehensive Approach to Investigate CO2 Reduction Electrocatalysts at High Current Densities

Author:

Larrazábal Gastón O.1ORCID,Ma Ming2,Seger Brian1ORCID

Affiliation:

1. Section for Surface Physics and Catalysis (SurfCat), Department of Physics, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark

2. School of Chemical Engineering and Technology, Xi’an Jiaotong University, Xi’an 710049, People’s Republic of China

Funder

Xi?an Jiaotong University

H2020 Marie Sklodowska-Curie Actions

H2020 Societal Challenges

Villum Fonden

Innovationsfonden

Publisher

American Chemical Society (ACS)

Reference26 articles.

1. Masson-Delmotte, V.; Zhai, P.; Pörtner, H.O.; Roberts, D.; Skea, J.; Shukla, P. R.; Pirani, A.; Moufouma-Okia, W.; Péan, C.; Pidcock, R.; Connors, S.; Matthews, J. B. R.; Chen, Y.; Zhou, X.; Gomis, M. I.; Lonnoy, E.; Maycock, T.; Tignor, M.; Waterfield, T. IPCC, 2018: Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty; IPCC, 2019.

2. What would it take for renewably powered electrosynthesis to displace petrochemical processes?

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

4. Formation of hydrocarbons in the electrochemical reduction of carbon dioxide at a copper electrode in aqueous solution

5. CO 2 electroreduction to ethylene via hydroxide-mediated copper catalysis at an abrupt interface

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