Challenges and Opportunities for Single-Atom Electrocatalysts: From Lab-Scale Research to Potential Industry-Level Applications

Chen Jia, Qian Sun, Ruirui Liu, Guangzhao Mao, Thomas Maschmeyer, J. Justin Gooding, Tao Zhang, Liming Dai, Chuan Zhao*

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

Abstract

Single-atom electrocatalysts (SACs) are a class of promising materials for driving electrochemical energy conversion reactions due to their intrinsic advantages, including maximum metal utilization, well-defined active structures, and strong interface effects. However, SACs have not reached full commercialization for broad industrial applications. This review summarizes recent research achievements in the design of SACs for crucial electrocatalytic reactions on their active sites, coordination, and substrates, as well as the synthesis methods. The key challenges facing SACs in activity, selectivity, stability, and scalability, are highlighted. Furthermore, it is pointed out the new strategies to address these challenges including increasing intrinsic activity of metal sites, enhancing the utilization of metal sites, improving the stability, optimizing the local environment, developing new fabrication techniques, leveraging insights from theoretical studies, and expanding potential applications. Finally, the views are offered on the future direction of single-atom electrocatalysis toward commercialization.

Original languageEnglish
Article number2404659
JournalAdvanced Materials
Volume36
Issue number42
Early online date27 Jun 2024
DOIs
Publication statusPublished - 17 Oct 2024

Keywords / Materials (for Non-textual outputs)

  • active sites
  • coordination
  • single-atom electrocatalysts
  • substrate
  • synthesis

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