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A polydopamine coating enabling the stable cycling of MnO2 cathode materials in aqueous zinc batteries.
Zhang, Guoli; Zhu, Jiaqi; Lin, Lu; Liu, Yaozhi; Li, Shuo; Li, Qianrui; Liu, Xiao-Xia; Sun, Xiaoqi.
Afiliación
  • Zhang G; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Zhu J; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Lin L; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Liu Y; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Li S; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Li Q; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Liu XX; Department of Chemistry, Northeastern University Shenyang 110819 China xxliu@mail.neu.edu.cn sunxiaoqi@mail.neu.edu.cn.
  • Sun X; National Frontiers Science Center for Industrial Intelligence and Systems Optimization, Northeastern University 3-11 Wenhua Road Shenyang 110819 China.
Chem Sci ; 15(10): 3545-3551, 2024 Mar 06.
Article en En | MEDLINE | ID: mdl-38455003
ABSTRACT
MnO2 is a desired cathode candidate for aqueous zinc batteries. However, their cycling stability is seriously limited by active material dissolution, and pre-addition of Mn2+ salts in electrolytes is widely required to shift the dissolution equilibrium. Herein, we synthesize a polydopamine (PDA) coated MnO2 composite material (MnO2/PDA) to realize stable cycling in zinc cells without relying on pre-added Mn2+. The functional groups on PDA exhibit strong coordination ability with the Mn active material. It not only confines dissolved species within the cathode during discharge, but also enhances their deposition back to the cathode during charge to retrieve the active material. Thanks to this effect, the cathode achieves 81.1% capacity retention after 2000 cycles at 1 A g-1 in the 1 M ZnSO4 electrolyte, superior to 37.3% with the regular MnO2 cathode. This work presents an effective strategy to realize the stable cycling of manganese oxide cathode materials in aqueous zinc batteries.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Chem Sci Año: 2024 Tipo del documento: Article