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SnO2 Nanosheets-Based Sensor Employing for Detecting Hydrogen from Lithium-Ion Battery Failure

  • Bo Rao
  • , Jinqiao Du
  • , Jie Tian
  • , Yan Li
  • , Yizeng Wu
  • , Jia Ren
  • , Tiande Lai
  • , Shujuan Li
  • , Jifeng Chu
  • , Aijun Yang
  • Shenzhen Power Supply Corporation
  • Xi'an Jiaotong University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Battery safety has emerged as an increasingly critical issue. During the failure process of lithium-ion batteries, the release of hydrogen gas is one of the characteristic byproducts of thermal runaway in lithium batteries. A hydrogen sensor with fast responsiveness, high sensitivity, accuracy, and reliability for real-time monitoring of environmental hydrogen concentration plays a pivotal role in assessing the health status of lithium-ion batteries and enabling early warning of thermal runaway. In this study, SnO2 nanosheet materials were synthesized via a hydrothermal method, and their hydrogen-sensing performance was systematically investigated. The results demonstrate that the SnO2 nanosheet gas sensor exhibits a response value of 11.64 to 1000 ppm hydrogen gas, with response time of 22 s and recovery time of 18 s. Within the hydrogen concentration range of 50–2000 ppm, the sensor shows a strong linear correlation between the response value and gas concentration. Repeatability experiments confirm that the SnO2 nanosheet gas sensor features high sensitivity, excellent reproducibility, and stable performance toward hydrogen gas.

Original languageEnglish
Title of host publicationThe Proceedings of the 20th Annual Conference of China Electrotechnical Society - Volume I
EditorsQingxin Yang, Dianguo Xu, Xuerong Ye, Qiuyue Nie, Yueshi Guan
PublisherSpringer Science and Business Media Deutschland GmbH
Pages306-316
Number of pages11
ISBN (Print)9789819590421
DOIs
StatePublished - 2026
Event20th Annual Conference of China Electrotechnical Society, ACCES 2025 - Harbin, China
Duration: 19 Sep 202521 Sep 2025

Publication series

NameLecture Notes in Electrical Engineering
Volume1558 LNEE
ISSN (Print)1876-1100
ISSN (Electronic)1876-1119

Conference

Conference20th Annual Conference of China Electrotechnical Society, ACCES 2025
Country/TerritoryChina
CityHarbin
Period19/09/2521/09/25

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

  • Hydrogen
  • Lithium Battery Safety
  • Semiconductor Gas Sensor
  • SnO Nanosheets

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