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首页> 外文期刊>ACS nano >Efficient Flame Detection and Early Warning Sensors on Combustible Materials Using Hierarchical Graphene Oxide/Silicone Coatings
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Efficient Flame Detection and Early Warning Sensors on Combustible Materials Using Hierarchical Graphene Oxide/Silicone Coatings

机译:使用等级石墨烯氧化物/硅氧烷涂料的可燃材料上有效的火焰检测和预警传感器

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摘要

Design and development of smart sensors for rapid flame detection in postcombustion and early fire warning in precombustion situations are critically needed to improve the fire safety of combustible materials in many applications. Herein, we describe the fabrication of hierarchical coatings created by assembling a multilayered graphene oxide (GO)/silicone structure onto different combustible substrate materials. The resulting coatings exhibit distinct temperature-responsive electrical resistance change as efficient early warning sensors for detecting abnormal high environmental temperature, thus enabling fire prevention below the ignition temperature of combustible materials. After encountering a flame attack, we demonstrate extremely rapid flame detection response in 2–3 s and excellent flame self-extinguishing retardancy for the multilayered GO/silicone structure that can be synergistically transformed to a multiscale graphene/nanosilica protection layer. The hierarchical coatings developed are promising for fire prevention and protection applications in various critical fire risk and related perilous circumstances.
机译:智能传感器的设计和开发在生物化外部爆炸和早期火灾警告中进行快速火焰检测,致密地需要在许多应用中提高可燃材料的防火安全。在此,我们描述通过将多层的氧化烯氧化物(GO)/硅氧烷结构组装到不同的可燃底物材料上来产生的分层涂层的制造。得到的涂层表现出不同的温度响应电阻变化,作为用于检测异常高环境温度的有效预警传感器,从而使防火在可燃材料的点火温度以下。在遇到火焰攻击之后,我们在2-3秒中展示了极其快速的火焰检测响应,以及用于多层去/硅氧烷结构的优异火焰自熄性延缓性,其可以协同转化为多尺度石墨烯/纳米硅胶保护层。开发的等级涂层在各种临界火灾风险和相关危险环境中具有防火和保护应用。

著录项

  • 来源
    《ACS nano》 |2018年第1期|共9页
  • 作者单位

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    College of Chemistry and Chemical Engineering Yangzhou University Yangzhou Jiangsu 225002 China;

    Key Laboratory of Organosilicon Chemistry and Material Technology of Ministry of Education College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China;

    Centre for Advanced Materials Technology (CAMT) School of Aerospace Mechanical and Mechatronic Engineering J07 The University of Sydney Sydney NSW 2006 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    flame detecting/warning sensor; graphene oxide; hierarchical coatings; silicone; synergistic flame retardancy; temperature-responsive resistance change;

    机译:火焰检测/警告传感器;石墨烯氧化物;等级涂层;硅胶;协同阻燃性;温度响应性变化;

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