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Large-scale defect-rich iron/nitrogen co-doped graphene-based materials as the excellent bifunctional electrocatalyst for liquid and flexible all-solid-state zinc-air batteries.
Liu, Yuepeng; Bao, Jiehua; Li, Zhongfang; Zhang, Lei; Zhang, Shenzhi; Wang, Likai; Niu, Xueliang; Sun, Peng; Xu, Liping.
Affiliation
  • Liu Y; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Bao J; School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory, Nanjing 211189, PR China.
  • Li Z; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China. Electronic address: zhfli@sdut.edu.cn.
  • Zhang L; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Zhang S; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Wang L; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Niu X; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Sun P; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
  • Xu L; School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo 255049, PR China.
J Colloid Interface Sci ; 607(Pt 2): 1201-1214, 2022 Feb.
Article in En | MEDLINE | ID: mdl-34571307
ABSTRACT
Defect-engineering in transition-metal-doped carbon-based catalyst plays an essential role for improving the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) performance. Herein, we report a ball-milling induced defect assisted with ZnCl2 strategy for fabricating defect-rich iron/nitrogen co-doped graphene-based materials (Fe-N-G). The substantial mechanical shear forces and the constant corrosion to the carbon matrix by ZnCl2 lead to the creation of abundant defects in graphene-based materials, which facilitates doping for heteroatoms. The defect-rich Fe-N-G catalyst with abundant Fe-Nx active sites displays excellent ORR performance. For OER, the over potential for Fe-N-G outperforms that of RuO2 in 1 M KOH at 10 mA cm-2. The Density Functional Theory calculations unravel that the impressive OER performance is attributable to the introduction of abundant defects. Additionally, the liquid and all-solid-state zinc-air batteries equipped with the prepared material as the air cathode demonstrate high power density, high specific capacity, and long charge-discharge stability. This work offers a practical method for manufacturing high-performance electrocatalysts for environmental and energy-related fields.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Colloid Interface Sci Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: J Colloid Interface Sci Year: 2022 Document type: Article
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