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May 15, 2026ChemSusChem0 citationsOpen Access

Forging Sustainable Carbon–Nitrogen Bonds from CO 2 and NO x : Mechanistic Insights and Catalyst Design for Electrochemical CN Coupling

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SJSoo Jin JeonCXChengkai XiaJKJae‐Joong Kim

Key Points

  • The aim is to develop effective methods for forming sustainable carbon-nitrogen bonds from CO2 and NOx.
  • Utilized operando spectroscopy and theoretical approaches to analyze catalysts.
  • Investigated various catalyst architectures for optimal local charge distribution.
  • Employed advanced reactor configurations and optimized electrolytes for increased efficiency.
  • Demonstrated enhanced coupling efficiency with engineered dual-atom and single-atom catalysts.
  • Achieved stability improvement of the coupling process through optimized reactor designs.
  • Outlined a framework for future catalyst development using machine learning and technoeconomic evaluations.

Abstract

) through operando spectroscopy and theory. Catalyst architectures, including dual-atom sites, heterostructure interfaces, vacancy-engineered lattices, and single-atom frameworks, modulate local charge distribution to favor selective coupling. At the system level, advances in reactor configuration and electrolyte optimization further enhance efficiency and stability. Finally, emerging directions in multimodal diagnostics, machine learning-driven catalyst discovery, and technoeconomic evaluation outline a roadmap for scalable electrochemical CN coupling. Together, these efforts establish a foundation for sustainable nitrogen chemistry and renewable-powered carbon utilization.

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Cite This Study

Jeon et al. (2026) studied this question.

synapsesocial.com/papers/6a06b971e7dec685947ac1cfhttps://doi.org/10.1002/cssc.70702
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