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Mixed-dimensional induced synergistic effect of PtCuCo high-efficiency electrocatalyst boosts liquid fuels electrooxidation

  • Shuna Li
  • , Yingying Wang
  • , Lingling Jin
  • , Zhaoyi Liu
  • , Yuanyuan Min
  • , Yanyun Ma
  • , Feng Liu
  • , Maochang Liu
  • Jining University
  • Shandong Vocational College of Light Industry
  • Yutai County Emergency Management Bureau
  • Soochow University
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

Abstract

Constructing high-efficient electrocatalysts for ethylene glycol electrooxidation reaction (EGOR) is of practical importance for direct alcohol fuel cells. Herein, the mixed-dimensional nanostructure PtCuCox catalysts with the 1D nanowires and 0D nanoparticles merits are fabricated through a solvothermal method to optimize and enhance the electrocatalytic properties towards EGOR. Benefiting from the synergistic effects of multiple components, PtCuCo1.8 catalyst achieves high specific activity of 2.68 mA/cm2 and mass activity of 936.8 mA/mgPt towards EGOR, which is about 5.1 times and 2.5 times higher than the state-of-the-art Pt/C catalyst. Meanwhile, density functional theory (DFT) simulations reveal the upshift of the Pt D‐band center in PtCuCo catalyst, suggesting that the optimized electronic structure balances the adsorption of adsorbed OH (OHads) and adsorbed CO (COads) intermediates, thereby enhancing CO tolerance. Benefiting from the synergistic effect of multiple components, PtCuCo1.8 catalyst demonstrates outstanding long-term durability and lower apparent activation energy. This study offers a promising strategy for the rational design of efficient Pt-based electrocatalysts that combine multiple structural and electronic advantages for fuel cell applications.

Original languageEnglish
Article number188914
JournalJournal of Alloys and Compounds
Volume1071
DOIs
StatePublished - 15 Jun 2026

Keywords

  • Ethylene glycol electrooxidation reaction
  • Mixed-dimensional nanostructure
  • Pt-based multicomponent alloy
  • Synergistic effect

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