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March 29, 20260 citationsOpen Access

Synergistic Interaction of Cobalt Carbodiimide Flakes on Oxidized Carbon Nanotubes for Enhanced Electrocatalytic Oxygen Reduction

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CHChong HuangHZHan ZhaoBJBingquan Jia

Key Points

  • This research aims to develop and characterize cobalt carbodiimide flakes as effective electrocatalysts for the oxygen reduction reaction.
  • Synthesis of CoNCN flakes with specific M–N–C structures
  • Support of CoNCN on oxidized carbon nanotubes
  • Electrochemical testing for ORR performance
  • Quasi in situ X-ray spectroscopy for structural analysis
  • CoNCN/O-CNT electrocatalyst showed comparable activity to commercial Pt/C catalysts
  • Only 6 mV attenuation in half-wave potential after 20000 cycles
  • Quasi in situ X-ray studies confirmed structural stability during electrocatalysis

Abstract

Transition metal-nitrogen-carbon (M–N–C) based catalysts have shown great promise as an alternative to platinum group metals for the oxygen reduction reaction (ORR). However, the complex coordination environments of different active centers make it challenging to achieve a precise understanding of the structure-function relationships in M–N–C based catalysts. Herein, we developed transition metal carbodiimides with unambiguously characterized M–N–C moieties and large M–M interatomic distances as promising ORR electrocatalysts. Crystalline CoNCN flakes with preferential exposure of (100) facets were supported on oxidized carbon nanotubes (O-CNTs), which assisted charge redistribution around Co centers. The obtained CoNCN/O-CNT electrocatalyst displayed a catalytic activity comparable to that of commercial Pt/C catalysts and good long-term stability with the attenuation of only 6 mV in half-wave potential after 20000 cyclic voltammetry cycles. Quasi in situ X-ray emission and absorption spectroscopy experiments confirmed the structural stability of the Co–N–C motifs during electrocatalysis. These results offer an ideal material system for understanding the structure-function correlation between well-defined M–N–C moieties and ORR activity.

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Cite This Study

Huang et al. (2025) studied this question.

synapsesocial.com/papers/69c8c34bde0f0f753b39dff6https://doi.org/10.3929/ethz-c-000792764
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Also Consider

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  4. 4Template-directed synthesis of M-N₄ type catalysts for electrochemical conversion reactions2026
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