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June 29, 2026Dian hua xue/Dian huaxue0 citationsOpen Access

Distinct CO2 Electroreduction Behaviors over Planar and Non-Planar Cobalt Molecular Catalysts

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RJRu JiaZCZhu Cheng-biaoZZZi-Mo Zhang

Key Points

  • This research aims to explore how spatial configurations of cobalt complexes affect their performance in CO2 reduction reactions.
  • Synthesized two cobalt complexes: a planar CoHAM and a non-planar Co(phen)2Cl2.
  • Evaluated CO2 reduction performance of both catalysts.
  • Utilized in-situ UV-vis spectroscopy, high-resolution mass spectrometry, and Raman spectroscopy for analysis.
  • The planar CoHAM showed significantly higher CO2 reduction performance compared to non-planar Co(phen)2Cl2.
  • Identified key intermediates and reaction pathways contributing to performance differences.
  • Demonstrated the importance of spatial configuration in enhancing electrocatalytic activity.

Abstract

Molecular catalysts serve as ideal platforms for studying electrocatalytic reaction mechanisms. While current research mainly focuses on modulating central metals or surrounding ligands, the influence of molecular spatial configuration remains largely unexplored. Herein, we synthesized two cobalt complexes with similar ligand environments but distinct spatial geometries, a planar cobalt hexaazamacrocyclic complex (CoHAM) and a non-planar acyclic Co(phen)2Cl2, and evaluated their performance in CO2 reduction reaction (CO2RR). The planar CoHAM exhibited dramatically superior CO2RR performance compared to the non-planar Co(phen)2Cl2. Through a series of combined analyses using in-situ UV-vis spectroscopy, high-resolution mass spectrometry (HRMS), and Raman spectroscopy, we elucidated the origins of this performance gap by identifying key intermediates and reaction pathways. These findings underscore the critical role of the spatial configuration of molecular catalysts in governing electrocatalytic performance and provide a strategic direction for the rational design of efficient CO2RR catalysts.

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Cite This Study

Jia et al. (2026) studied this question.

synapsesocial.com/papers/6a420b7af91bb43ea919294dhttps://doi.org/10.61558/2993-074x.3610
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