电催化剂
材料科学
碳纤维
氧还原反应
纳米技术
多孔性
氧气
多孔介质
Atom(片上系统)
氧原子
化学工程
化学物理
化学
物理化学
电极
电化学
分子
计算机科学
复合数
有机化学
复合材料
嵌入式系统
工程类
作者
Shilong Zhou,Chao Chen,Jiawei Xia,Le Li,Xingyue Qian,Fengxiang Yin,Guangyu He,Qun Chen,Haiqun Chen
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-11-11
卷期号:18 (47): 32995-33004
被引量:2
标识
DOI:10.1021/acsnano.4c15410
摘要
Precisely designing asymmetric active centers and exploring their electronic regulation effects to prepare efficient bifunctional single-atom catalysts (SACs) is important for boosting the practical applications of zinc–air batteries (ZABs). Herein, an effective strategy has been developed by introducing an axial S atom to the FeN4 active center, simultaneously assisted by pyrolyzing the graphene oxide (GO) sheathed zeolitic–imidazolate framework-8 (ZIF8) composite and constructing a three-dimensional (3D) porous framework with abundant FeN4S1 moieties. This structure can accelerate the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) kinetics owing to the modulated electronic redistribution and d-band center with a reduced energy barrier. The optimal S–Fe–NC/rGO showcases a lower voltage gap (ΔE) of 0.64 V between both the ORR and OER half-wave potentials at 10 mA cm–2, highlighting the excellent bifunctional activities. The assembled S–Fe–NC/rGO rechargeable liquid ZABs deliver a power density of 154.05 mW·cm–2 and a desirable durability of >900 h. More importantly, the corresponding flexible solid-state ZABs exhibit considerable foldability.
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