Structural Insight into Layer Gliding and Lattice Distortion in Layered Manganese Oxide Electrodes for Potassium-Ion Batteries

  • Zhang, Qing
  • Didier, Christophe R
  • Pang, Wei Kong
  • Liu, Yajie
  • Wang, Zhijie
  • Li, Sean
  • Peterson, Vanessa K
  • Mao, Jianfeng
  • Guo, Zaiping
Open PDF
Publication date
January 2019
Publisher
Sociological Research Online
Language
English

Abstract

Potassium-ion batteries (PIBs) are an emerging, affordable, and environmentally friendly alternative to lithium-ion batteries, with their further development driven by the need for suitably performing electrode materials capable of reversibly accommodating the relatively large K+. Layer-structured manganese oxides are attractive as electrodes for PIBs, but suffer from structural instability and sluggish kinetics of K+ insertion/extraction, leading to poor rate capability. Herein, cobalt is successfully introduced at the manganese site in the KxMnO2 layered oxide electrode material and it is shown that with only 5% Co, the reversible capacity increases by 30% at 22 mA g-1 and by 92% at 440 mA g-1. In operando synchrotron X-ray diffraction re...

Extracted data

We use cookies to provide a better user experience.