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◆ Carbon Energy2025-12-18· Bifunctional

Spin‐State Engineering via Cr <sup>3+</sup> Incorporation in Co <sub>3</sub> O <sub>4</sub> Spinel for Efficient Bifunctional Oxygen Electrocatalysis

Guangjian Xing, Mingwang Lu, Guanhua Zhang, Qitong Sheng, Xiaojing Yang, Xiaofei Yu, Xinghua Zhang, Zunming Lu, Lanlan Li

原始摘要(英文原文)· Original abstract
ABSTRACT The primary challenge in rechargeable Zn‐air batteries lies in developing a catalyst capable of simultaneously improving performance for oxygen reduction reaction (ORR) during discharge and oxygen evolution reaction (OER) during charge. Engineering spin configuration is essential for enhancing the intrinsic bifunctional activity and stability of spinel Co 3 O 4 . Herein, Cr 3+ is doped into Co 3 O 4 , inducing directional distortion of CoO 6 octahedron to modify crystal field splitting energy, pushing Co Oh toward intermediate‐spin (IS) configuration () with optimized occupancy of 1.04. As a result, 9%Cr‐Co 3 O 4 demonstrates an excellent bifunctional activity and remarkable rechargeable Zn‐air battery performance that even outperforms Pt/C + RuO 2 . Density functional theory (DFT) studies reveal that IS Co Oh not only regulates the adsorption energy of ORR/OER species but also transform the O 2 adsorption configuration from end‐on to Griffith configuration, thus modifies the mechanisms of both ORR and OER process and optimize bifunctional activity and selectivity. This work provides mechanistic insight into the spin origin of ORR/OER catalysis and highlights a promising strategy for developing robust bifunctional electrocatalysts.
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Spin‐State Engineering via Cr <sup>3+</sup> Incorporation in Co <sub>3</sub> O <sub>4</sub> Spinel for Efficient Bifunctional Oxygen Electrocatalysis — 科研速览 Science Skim