TY - JOUR
T1 - Local Single Co Sites at the Second Shell of Fe-N4 Active Sites to Boost Oxygen Reduction Reaction
AU - Yi, Xiaoyu
AU - Yang, Huijuan
AU - Yang, Xiaoxuan
AU - Li, Xiaokang
AU - Yan, Cheng
AU - Zhang, Jianhua
AU - Chen, Lina
AU - Dong, Jinjuan
AU - Qin, Jian
AU - Zhang, Gaini
AU - Wang, Jingjing
AU - Li, Wenbin
AU - Zhou, Zhiyou
AU - Wu, Gang
AU - Li, Xifei
N1 - Publisher Copyright:
© 2023 Wiley-VCH GmbH.
PY - 2024/2/26
Y1 - 2024/2/26
N2 - Fe single-atom catalysts (SACs) are a promising catalyst for oxygen reduction reaction (ORR) in both Zn–air batteries (ZABs) but have a certain distance to compete with Pt-based catalysts. Rational modulation of the coordination environment in the second coordination shell of SACs offers an opportunity to improve the intrinsic ORR activity, yet a challenge. Here, a novel strategy is reported to construct a dual-metal catalyst by introducing a single Co atom in the second coordination shell of the Fe center. The dual-metal N3─Fe─N─Co site with a certain Fe─Co distance of 0.312 nm is constructed. It allows for manipulation of the positive shift of the Fe center charge state, driving the d-band center up-shift by 0.63 eV, thereby offering the optimal adsorption of intermediates. Benefiting from this structure, the as-prepared Fe(Co2nd)-NC enables an excellent ORR activity with a half-wave potential of 0.948 V in 0.1 M KOH. As a cathode in ZABs, it delivered an outstanding peak power density of 218 mW cm−2 and a specific capacity of 915 mAh gZn−1 at 5 mA cm−2, respectively, with superior long-term durability over 680 h. The second shell layer alignment regulation strategy shows great potential for energy storage applications.
AB - Fe single-atom catalysts (SACs) are a promising catalyst for oxygen reduction reaction (ORR) in both Zn–air batteries (ZABs) but have a certain distance to compete with Pt-based catalysts. Rational modulation of the coordination environment in the second coordination shell of SACs offers an opportunity to improve the intrinsic ORR activity, yet a challenge. Here, a novel strategy is reported to construct a dual-metal catalyst by introducing a single Co atom in the second coordination shell of the Fe center. The dual-metal N3─Fe─N─Co site with a certain Fe─Co distance of 0.312 nm is constructed. It allows for manipulation of the positive shift of the Fe center charge state, driving the d-band center up-shift by 0.63 eV, thereby offering the optimal adsorption of intermediates. Benefiting from this structure, the as-prepared Fe(Co2nd)-NC enables an excellent ORR activity with a half-wave potential of 0.948 V in 0.1 M KOH. As a cathode in ZABs, it delivered an outstanding peak power density of 218 mW cm−2 and a specific capacity of 915 mAh gZn−1 at 5 mA cm−2, respectively, with superior long-term durability over 680 h. The second shell layer alignment regulation strategy shows great potential for energy storage applications.
KW - Fe single atoms
KW - Zinc–air batteries
KW - dual-metal catalyst
KW - oxygen reduction reaction
KW - second shell coordination
UR - http://www.scopus.com/inward/record.url?scp=85178920508&partnerID=8YFLogxK
U2 - 10.1002/adfm.202309728
DO - 10.1002/adfm.202309728
M3 - Article
AN - SCOPUS:85178920508
SN - 1616-301X
VL - 34
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 9
M1 - 2309728
ER -