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February 16, 2023JACS Au132 citationsOpen Access

Challenges and Perspectives of Single-Atom-Based Catalysts for Electrochemical Reactions

JLJiazhan LiCCChang ChenLXLekai Xu

Key Points

  • This Perspective explores the challenges faced by single-atom catalysts (SACs) in electrochemical reactions, focusing on activity and stability issues.
  • Analyzed the current limitations in SAC performance and stability.
  • Identified controlled synthesis and innovative heat-treatment techniques as key strategies.
  • Highlighted the importance of operando characterizations and theoretical simulations.
  • Identified insufficient activity and stability of SACs as major bottlenecks for practical applications.
  • Proposed a synthesis approach with designed precursors could lead to improved performance.
  • Suggest that advanced characterization techniques are crucial for understanding catalytic mechanisms.

Abstract

Single-atom catalysts (SACs) are emerging as the most promising catalysts for various electrochemical reactions. The isolated dispersion of metal atoms enables high density of active sites, and the simplified structure makes them ideal model systems to study the structure-performance relationships. However, the activity of SACs is still insufficient, and the stability of SACs is usually inferior but has received little attention, hindering their practical applications in real devices. Moreover, the catalytic mechanism on a single metal site is unclear, leading the development of SACs to rely on trial-and-error experiments. How can one break the current bottleneck of active sites density? How can one further increase the activity/stability of metal sites? In this Perspective, we discuss the underlying reasons for the current challenges and identify precisely controlled synthesis involving designed precursors and innovative heat-treatment techniques as the key for the development of high-performance SACs. In addition, advanced operando characterizations and theoretical simulations are essential for uncovering the true structure and electrocatalytic mechanism of an active site. Finally, future directions that may arise breakthroughs are discussed.

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Cite This Study

Li et al. (2023) studied this question.

synapsesocial.com/papers/69d8ff654332c00a00ae29adhttps://doi.org/10.1021/jacsau.3c00001
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