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January 18, 2026Advanced Functional Materials7 citations

Operando Optical Failure Identification and Early Warning of Thermal Runaway for Batteries

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JPJiayong PanBeijing Institute of TechnologyZWZhongbao WeiBeijing Institute of TechnologyXHXiangming HeKey Laboratory of Nuclear Radiation and Nuclear Energy Technology

Key Points

  • The aim is to improve the detection of thermal runaway in batteries to enhance safety and performance.
  • Implanted a fiber bragg grating sensor in the battery for internal monitoring.
  • Monitored internal strain and temperature concurrently without sacrificing performance.
  • Analyzed internal strain during the thermal runaway incubation phase.
  • Identified internal strain as a key indicator of battery failure modes during thermal runaway.
  • Uncovered an extended warning window of 18.8 minutes using internal strain over traditional voltage clues.
  • Revealed critical battery failure processes including electrode expansion and gas generation.

Abstract

ABSTRACT Operando monitoring of internal multi‐physical processes is critical for analyzing battery failures and issuing risk warnings. However, existing approaches fall short in enabling operando internal measurement, particularly during the drastic failure stage of batteries. To address this challenge, we implant a Fiber Bragg Grating sensor into the battery, enabling concurrent monitoring of internal strain and temperature without compromising the cell performance. For the first time, we unveil the critical role of internal strain in elucidating the failure modes during the thermal runaway (TR) incubation, encompassing abnormal electrode expansion, gas generation, lithium plating, and “anode‐electrolyte‐cathode” chain reactions. Furthermore, we identify the internal strain derivative as a novel clue for early warning of TR, offering an extended warning window of up to 18.8 min compared with commonly‐used voltage clues. This study provides an innovative and scalable approach for operando failure stage identification and early TR warning of lithium‐ion batteries.

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Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/696c789ceb60fb80d1396b9ehttps://doi.org/10.1002/adfm.202530706
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