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Protecting emergency workers and armed forces from volatile toxic compounds: Applicability of reversible conductive polymer-based sensors in barrier materials

机译:保护急救人员和武装部队免受挥发性有毒化合物的影响:可逆导电聚合物基传感器在阻隔材料中的适用性

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摘要

Barrier materials have wide applicability in both professional (military, medical, industrial) and non-professional (leisure and sports) fields. This paper focuses on the preparation of real conductive polymer (CP) sensors, for the study of the permeation of volatile toxic compounds through barrier materials. Use of such a CP sensor can help improve the quality of barrier materials used in protective clothing. Several types of platforms have been manufactured or purchased for use as comb sensors with different electrode dimensions, and a suitable method of applying the detection layer of conductive polymers (polyaniline and poly-pyrrole) has been developed. Prepared sensors were obtained using various technologies and were assessed not only for response to exposure to vapors of volatile toxic substances, but also for the possibility of their incorporation into a permeation cell, in order to expand the possibilities of using existing permeation devices. The resulting conductivity of the surface film ranges from 50 to 10,000 mu S/cm. When exposed to ethanol vapors, the conductivity of the sensors dropped significantly and returned to the original value after exposure ended. The conductivity of the B12 CP sensor was in the range of 10-100 mS/cm and is considered the most valuable tested sensor. CPs deposited on this substrate have very high sensitivity in units of ppm (in special cases, even ppb) within the detection of analytes (in this case toxic vapors of ethanol, acetic acid) and the ability to return to initial (zero) conductivity. (C) 2019 Elsevier B.V. All rights reserved.
机译:阻隔材料在专业(军事,医疗,工业)和非专业(休闲和体育)领域均具有广泛的适用性。本文着重于制备实际的导电聚合物(CP)传感器,以研究挥发性有毒化合物通过阻挡层材料的渗透。使用此类CP传感器可以帮助提高防护服中使用的阻隔材料的质量。已经制造或购买了几种类型的平台以用作具有不同电极尺寸的梳状传感器,并且已经开发了一种施加导电聚合物(聚苯胺和聚吡咯)的检测层的合适方法。使用各种技术获得了准备好的传感器,不仅对暴露于挥发性有毒物质蒸气的响应进行了评估,而且还评估了将其结合到渗透池中的可能性,以扩大使用现有渗透装置的可能性。表面膜的所得电导率范围为50至10,000μS/ cm。当暴露于乙醇蒸汽中时,传感器的电导率显着下降,并在暴露结束后恢复到原始值。 B12 CP传感器的电导率在10-100 mS / cm的范围内,被认为是最有价值的经过测试的传感器。在分析物(在这种情况下为乙醇,乙酸的有毒蒸气)的检测范围内,沉积在该基材上的CP具有很高的灵敏度(单位为ppm)(在特殊情况下,甚至是ppb),并且具有返回初始(零)电导率的能力。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第1期|133736.1-133736.11|共11页
  • 作者

  • 作者单位

    Univ Def Nucl Biol & Chem Def Inst Vyskov 68201 Czech Republic;

    Univ Def Nucl Biol & Chem Def Inst Vyskov 68201 Czech Republic|DEZA Detect & Capture Harmful Substances Hochmanova 1 Brno 62800 Czech Republic;

    Univ Oradea Fac Management & Technol Engn Dept Engn & Management Oradea 410087 Romania;

    Univ Bourgogne Franche Comte CNRS 6249 Lab Chronoenvironm Besancon France;

    Univ Oradea Fac Med & Pharm Dept Pharm Oradea 410028 Romania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reversible conductive polymer-based sensor; QCM sensor platform; Permeation cell; Volatile toxic compounds; Military textile barrier material;

    机译:基于可逆导电聚合物的传感器;QCM传感器平台;渗透池挥发性有毒化合物;军用纺织阻隔材料;

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