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Phase-engineered cathode for super-stable potassium storage

Engineering and Technology

Phase-engineered cathode for super-stable potassium storage

L. Wu, H. Fu, et al.

Discover the groundbreaking research by Lichen Wu and colleagues that presents phase-engineered VO₂ as a game-changing cathode for potassium-ion batteries. Amorphous VO₂ offers exceptional K storage and electrochemical performance, achieving remarkable capacity retention even after thousands of cycles. This study paves the way for enhanced rechargeable battery technologies.... show more
Abstract
The crystal phase structure of cathode material plays an important role in the cell performance. During cycling, the cathode material experiences immense stress due to phase transformation, resulting in capacity degradation. Here, we show phase-engineered VO2 as an improved potassium-ion battery cathode; specifically, the amorphous VO2 exhibits superior K storage ability, while the crystalline M phase VO2 cannot even store K+ ions stably. In contrast to other crystal phases, amorphous VO2 exhibits alleviated volume variation and improved electrochemical performance, leading to a maximum capacity of 111 mAh g−1 delivered at 20 mA g−1 and over 8 months of operation with good coulombic efficiency at 100 mA g−1. The capacity retention reaches 80% after 8500 cycles at 500 mA g−1. This work illustrates the effectiveness and superiority of phase engineering and provides meaningful insights into material optimization for rechargeable batteries.
Publisher
Nature Communications
Published On
Feb 06, 2023
Authors
Lichen Wu, Hongwei Fu, Shu Li, Jian Zhu, Jiang Zhou, Apparao M. Rao, Limei Cha, Kunkun Guo, Shuangchun Wen, Bingan Lu
Tags
VO₂
potassium-ion battery
cathode
amorphous
electrochemical performance
capacity retention
phase engineering
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