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April 11, 2026Chemical Science3 citationsOpen Access

Asymmetric electronic modulation in bridged Cu-O-Ni dual-atom catalysts promoting CO2 electroreduction

XBXue BaiLXLiyuan XiaoXXXiaoqin Xu

Key Points

  • To explore the effectiveness of bridged dual-atom catalysts in enhancing CO2 electroreduction activity and selectivity.
  • Introduced atomically precise heteronuclear dual-site configurations.
  • Investigated electrochemical performance of Cu-O-Ni catalysts in CO2 reduction.
  • Analyzed intrinsic activity and selectivity compared to single-atom systems.
  • Demonstrated significant improvement in CO2 reduction efficiency.
  • Showed increased selectivity for desired products over traditional catalysts.
  • Established a strong correlation between catalyst structure and electrochemical performance.

Abstract

Atomically precise heteronuclear dual-site configuration provides an effective strategy to overcome the intrinsic activity and selectivity limitations of single-atom systems in electrochemical CO2 reduction (CO2RR). Here, we introduce an oxygen-bridged...

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Cite This Study

Bai et al. (2026) studied this question.

synapsesocial.com/papers/69d9e5d178050d08c1b760b9https://doi.org/10.1039/d6sc01508e
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