Passer à la navigation principale Passer à la recherche Passer au contenu principal

Embedding covalency into metal catalysts for efficient electrochemical conversion of CO2

  • Hyung Kyu Lim
  • , Hyeyoung Shin
  • , William A. Goddard
  • , Yun Jeong Hwang
  • , Byoung Koun Min
  • , Hyungjun Kim
  • Korea Advanced Institute of Science and Technology
  • Beckman Institute
  • Korea Institute of Science and Technology
  • Korea University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

CO2 conversion is an essential technology to develop a sustainable carbon economy for the present and the future. Many studies have focused extensively on the electrochemical conversion of CO2 into various useful chemicals. However, there is not yet a solution of sufficiently high enough efficiency and stability to demonstrate practical applicability. In this work, we use first-principles-based high-throughput screening to propose silver-based catalysts for efficient electrochemical reduction of CO2 to CO while decreasing the overpotential by 0.4-0.5 V. We discovered the covalency-aided electrochemical reaction (CAER) mechanism in which p-block dopants have a major effect on the modulating reaction energetics by imposing partial covalency into the metal catalysts, thereby enhancing their catalytic activity well beyond modulations arising from d-block dopants. In particular, sulfur or arsenic doping can effectively minimize the overpotential with good structural and electrochemical stability. We expect this work to provide useful insights to guide the development of a feasible strategy to overcome the limitations of current technology for electrochemical CO2 conversion.

langue originaleAnglais
Pages (de - à)11355-11361
Nombre de pages7
journalJournal of the American Chemical Society
Volume136
Numéro de publication32
Les DOIs
étatPublié - 13 août 2014
Modification externeOui

Empreinte digitale

Examiner les sujets de recherche de « Embedding covalency into metal catalysts for efficient electrochemical conversion of CO2 ». Ensemble, ils forment une empreinte digitale unique.

Contient cette citation