Chlorine in NiO promotes electroreduction of CO2 to formate

Author:

Rodriguez-Olguin M.A.,Flox C.ORCID,Ponce-Pérez R.,Lipin R.ORCID,Ruiz-Zepeda F.,Winczewski J.P.ORCID,Kallio T.,Vandichel M.ORCID,Guerrero-Sánchez J.ORCID,Gardeniers J.G.E.ORCID,Takeuchi N.,Susarrey-Arce A.ORCID

Funder

Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México

European Research Council

Horizon 2020

Irish Centre for High-End Computing

University of Twente

Javna Agencija za Raziskovalno Dejavnost RS

Consejo Nacional de Ciencia y Tecnología

Publisher

Elsevier BV

Subject

General Materials Science

Reference84 articles.

1. Temporary reduction in daily global CO2 emissions during the COVID-19 forced confinement;Le Quéré;Nat. Clim. Change,2020

2. US rejection of the kyoto protocol: the impact on compliance costs and CO2 emissions;Manne;Energy Policy,2004

3. Comparative assessment of hydrogen production methods from renewable and non-renewable sources;Acar;Int. J. Hydrog. Energy,2014

4. A scalable method for preparing Cu electrocatalysts that convert CO2 into C2+ products;Kim;Nat. Commun.,2020

5. Defect and interface engineering for aqueous electrocatalytic CO2 reduction;Wang;Joule,2018

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