科研速览继续刷下去 →
◆ eScience Energy2025-11-21· Bifunctional

Breaking the activity–stability trade-off in single-atom catalysts via CoFe dual-sites for efficient zinc–air batteries

Yanhui Yu, Yiming Song, Weina Wang, Jing Li, Ruisong Li, Peng Rao, Tianjiao Wang, Daoxiong Wu, Ying Liang, Xinlong Tian

原始摘要(原文)
Rational design and the development of efficient bifunctional oxygen electrocatalysts play a vital role in advancing zinc–air batteries. Single-atom catalysts (SACs) have demonstrated high turnover frequency and site density, while their practical implementation is fundamentally limited by the persistent activity–stability trade-off, that is, the rigid scaling relationships governing oxygen redox intermediates. To address these challenges, density functional theory (DFT) calculations are firstly carried out to reveal that heterometallic coordination induces electronegativity-driven charge redistribution at Co centers, and subsequently, a series of atomically dispersed CoM/NC catalysts are synthesized via a scalable movable type printing method. The optimized CoFe/NC configuration holds an exceptional bifunctional activity with small potential gap between oxygen reduction and evolution as 0.641 V, which outperforms those of the Pt/C-RuO 2 . The CoFe/NC catalyst exhibits exceptional bifunctional activity in rechargeable Zn–air batteries, delivering a peak power density of 227 mW cm −2 alongside robust stability exceeding 350 h of continuous cycling. This work establishes a universal paradigm for breaking the intrinsic limitations of SACs through electronic-structure engineering in dual-metal architectures. • Density functional theory was used to establish a dual-function database for Co-based catalysts. • Various Co-based catalysts with dual metals were synthesized by a universal strategy. • The optimized CoFe/NC catalyst exhibited high performance in zinc–air batteries. • A synergetic mechanism for improving electrocatalytic performance was uncovered comprehensively.
读原文 ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文

Breaking the activity–stability trade-off in single-atom catalysts via CoFe dual-sites for efficient zinc–air batteries — 科研速览 Science Skim