TY - JOUR
T1 - Screening and Coupling Effects Jointly Construct Heteroatom Doping to Facilitate Efficient Bi-Functional Catalysis in Zinc–Air Batteries
AU - Zhang, Pengfei
AU - Wang, Keliang
AU - Zhou, Feng
AU - Zuo, Yayu
AU - Chen, Zhuo
AU - Shang, Nuo
AU - Wang, Hengwei
AU - Wei, Manhui
N1 - Publisher Copyright:
© 2026 Wiley-VCH GmbH.
PY - 2026/4/1
Y1 - 2026/4/1
N2 - The zinc-air batteries exhibit great development potential because of high-energy density, safety, and environmental protection. However, they are constrained by the high cost of precious catalysts and the slow kinetics of oxygen electrocatalysis. The current preparation process of bi-functional catalysts with considerable performance has poor universality and is difficult to achieve large-scale production. Herein, carbon materials doped with heteroatoms (C&H) were synthesized through screening of element redox reaction tendencies and the strategy of cooperative construction. The synergistic coupling of carbon substrate, transition metals, and non-metals jointly achieves excellent bi-functional oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) catalytic activities. Compared to commercial 20% Pt/C-RuO2, C&H-300 demonstrates higher power density (123 mW cm−2), specific capacity (745.5 mAh gZn−1), ultra-long cycle life of over 1200 h at 10.0 mA cm−2, which is superior to most related reports in the same field. Moreover, the assembled flexible zinc-air battery with C&H-300 shows no significant performance decline after undergoing a series of deformations. This study provides a simple and feasible strategy for the efficient and large-scale preparation of highly efficient non-noble metal bi-functional catalysts.
AB - The zinc-air batteries exhibit great development potential because of high-energy density, safety, and environmental protection. However, they are constrained by the high cost of precious catalysts and the slow kinetics of oxygen electrocatalysis. The current preparation process of bi-functional catalysts with considerable performance has poor universality and is difficult to achieve large-scale production. Herein, carbon materials doped with heteroatoms (C&H) were synthesized through screening of element redox reaction tendencies and the strategy of cooperative construction. The synergistic coupling of carbon substrate, transition metals, and non-metals jointly achieves excellent bi-functional oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) catalytic activities. Compared to commercial 20% Pt/C-RuO2, C&H-300 demonstrates higher power density (123 mW cm−2), specific capacity (745.5 mAh gZn−1), ultra-long cycle life of over 1200 h at 10.0 mA cm−2, which is superior to most related reports in the same field. Moreover, the assembled flexible zinc-air battery with C&H-300 shows no significant performance decline after undergoing a series of deformations. This study provides a simple and feasible strategy for the efficient and large-scale preparation of highly efficient non-noble metal bi-functional catalysts.
KW - heteroatoms
KW - oxygen electrocatalysis
KW - oxygen evolution reaction
KW - oxygen reduction reaction
KW - zinc-air batteries
UR - https://www.scopus.com/pages/publications/105029137085
U2 - 10.1002/smll.202513135
DO - 10.1002/smll.202513135
M3 - Article
AN - SCOPUS:105029137085
SN - 1613-6810
VL - 22
JO - Small
JF - Small
IS - 19
M1 - e13135
ER -