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Unveiling micro internal short circuit mechanism in a 60 Ah high-energy-density Li-ion pouch cell

  • Xiaopeng Qi
  • , Bingxue Liu
  • , Jing Pang
  • , Fengling Yun
  • , Rennian Wang
  • , Yi Cui
  • , Changhong Wang
  • , Kieran Doyle-Davis
  • , Chaojian Xing
  • , Sheng Fang
  • , Wei Quan
  • , Bin Li
  • , Qiang Zhang
  • , Shuaijin Wu
  • , Shiyang Liu
  • , Jiantao Wang*
  • , Xueliang Sun*
  • *Corresponding author for this work
  • China Automotive Battery Research Institute Co., Ltd
  • General Research Institute for Non-ferrous Metals China
  • Western University

Research output: Contribution to journalArticlepeer-review

Abstract

The identification, evaluation, and prevention of micro internal short circuits (ISCs) are crucial for the safety of large-capacity high-energy-density (HED) Li-ion cells. However, the evolution mechanism and the premonitory signals of the micro ISCs are not yet completely understood. Via a high-precision penetration test and accelerating rate calorimetry, we successfully trigger and investigate on-demand ISCs on a 60 Ah HED (≥ 290 Wh kg–1) Li-ion pouch cell with Si-based anode/Ni-rich cathode couple. Detailed behaviors of the cell components during micro ISCs, such as pinhole and crack formation, pore-closing, and rupture of the separators, as well as the destruction of positive electrodes and fusion of Al current collectors, are observed. Moreover, the correlation of these internal effects with external cell signals is identified. We demonstrate that voltage change signals, even at millivolt level, are noteworthy and can be used as premonitory signals for early warning of micro ISCs and leading indicators for predicting cell thermal runaway. The disclosed micro ISC propagation, alleviation, and acceleration mechanisms could guide the design of safe HED Li-ion cells.

Original languageEnglish
Article number105908
JournalNano Energy
Volume84
DOIs
StatePublished - Jun 2021
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Li-ion cells
  • Micro internal short circuits
  • Ni-rich cathode
  • Safety
  • Si-based anode
  • Thermal runaway

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