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Co3O4-NiO/rGO 复合材料的制备及其氢气传感器的应用

Translated title of the contribution: Preparation of Co3O4-NiO/rGO composites and application of its hydrogen sensor
  • Dan Wu
  • , Wenyi Dong
  • , Xiaoping Jiang
  • , Xiong Chen
  • , Xu He
  • , Yuefeng Su*
  • *Corresponding author for this work
  • Beijing Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

The safety problem of lithium-ion batteries (LIBs) has become an urgent bottleneck technical problem to be solved in the large-scale promotion and application of energy storage technology, and the identification of thermal runaway characteristics and the extraction of key parameters of LIBs are the basis for realizing the safety early warning of energy storage batteries. The thermal runaway process is usually accompanied by changes in battery temperature, voltage, current, deformation, gas composition and concentration. The existing gas sensors can not meet the early warning requirements of low cost, low power consumption, high selectivity and high stability of lithium-ion batteries. Aiming at the problems of high working temperature and poor selectivity of semiconductor metal oxides in gas sensing, Co3O4 and NiO nanosheets were in-situ doped on graphene aerogel by solvothermal method, and Co3O4-NiO/reduced graphene oxide (rGO) nanoflower composites with multi-porosity, multi-fold and large specific surface area were obtained. The gas sensor made of Co3O4-NiO/rGO composites has high sensitivity to H2 (86.8%@100×10−6) and short response time (T90=69 s). The lithium-ion battery heating triggered thermal runaway experiment was carried out. During the thermal runaway experiment, the changes of key characteristic parameters of temperature, voltage, gas type and concentration of soft packet battery were monitored. The critical-time of thermal runaway and early warning time were obtained. By comparing the experimental results of the commercial hydrogen sensor and the Co3O4-NiO/rGO hydrogen sensor in the battery thermal runaway experiment, it is shown that the Co3O4-NiO/rGO hydrogen sensor can detect the leakage of small concentration of H2 faster and with higher response, and it is expected to achieve more than 30 min of advance warning.

Translated title of the contributionPreparation of Co3O4-NiO/rGO composites and application of its hydrogen sensor
Original languageChinese (Traditional)
Pages (from-to)3530-3539
Number of pages10
JournalFuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
Volume43
Issue number6
DOIs
Publication statusPublished - Jun 2026

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