The Pillar Effect of Large‐Size Alkaline Ions on the Electrochemical Stability of Sodium Manganese Hexacyanoferrate for Sodium‐Ion Batteries

Author:

Zhou Aijun12ORCID,Guo Can12,Jiang Jicheng2,Wang Donghuang2,Wang Xin2,Ali Shamshad2ORCID,Li Jingze12,Xia Weiwei3,Fu Maosen3,Sun Wenwu4

Affiliation:

1. School of Materials and Energy University of Electronic Science and Technology of China Chengdu 611731 China

2. Yangtze Delta Region Institute Huzhou University of Electronic Science and Technology of China Huzhou 313001 China

3. School of Materials and Engineering Northwestern Polytechnical University 127 West Youyi Road Beilin District Xi'an Shaanxi 710072 P. R. China

4. Thermo Fisher Scientific Co., Ltd. Shanghai China Building A, China Core Technology Park, 2517 Jinke Road, Pudong New Area Shanghai 201203 China

Abstract

AbstractSodium manganese hexacyanoferrate (NaMnHCF) is an attractive candidate as a cathode material for sodium‐ion batteries due to its low cost and high energy density. However, its practical application is hindered by poor electrochemical stability caused by the Jahn‐Teller effect of Mn and the unstable structure of NaMnHCF. Here, this paper aims to address this issue by introducing highly stable AMnHCF (where A = K, Rb, or Cs) through a facile method to composite with NaMnHCF. The findings reveal that all AMnHCFs have a “pillar effect” on the crystal structure of NaMnHCF. It is observed that the degree of pillar effect varies depending on the specific AMnHCF used. The less electrochemically inactive the alkaline ion is and the greater the degree of compositing with NaMnHCF, the more dramatic the pillar effect. KMnHCF shows limited pillar effect due to its rough composition with NaMnHCF and the loss of K+ upon (de)intercalation. RbMnHCF has lower electrochemical activity and can be better composited with NaMnHCF. On the other hand, CsMnHCF exhibits the strongest pillar effect due to the inactivation of Cs+ and the excellent coherent structure formed by CsMnHCF and NaMnHCF. This research provides a new perspective on stabilizing NaMnHCF with other alkaline elements.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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