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首页> 外文期刊>Propellants, Explosives, Pyrotechnics >Chemiresistor Sensors Based on Conducting Polymers for Hypergolic Propellants and Acidic Vapors of Rocket Exhaust Plumes - A Review
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Chemiresistor Sensors Based on Conducting Polymers for Hypergolic Propellants and Acidic Vapors of Rocket Exhaust Plumes - A Review

机译:基于导电聚合物的化学气体传感器,用于超高推进剂和火箭尾气柱的酸性蒸汽-综述

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摘要

This review covers the main applications of conducting polymers in chemiresistor sensors for sensing hazardous hypergolic liquid propellant vapors and toxic exhaust plume acidic vapors of solid rocket motors at explosive (percent), toxic and threshold limit value concentration levels. The First part is focused on vapors of NO2 and mixed oxides of nitrogen (MON-3). The Second part is focused on vapors of hydrazines such as hydrazine, monomethylhydra-zine (MMH) and unsymmetrical dimethylhydrazine (UDMH). Chemiresistor sensors for toxic HCI vapors of exhaust plume of rockets and missiles are reviewed in the third part. Salient features of the sensors such as conducting mechanisms during sensing, thickness of sensing layer, factors that influence conductivity, response time, recovery time, detectable range, and minimum detectable limit are discussed in this review. Advantages and disadvantages of conducting polymer coated fabrics as novel chemiresistor sensors over inorganic substrates are also discussed.
机译:这篇综述涵盖了化学传感器传感器中导电聚合物在爆炸性(百分比),有毒和极限限值浓度水平下感测固体火箭发动机的有害高斯液体推进剂蒸气和有毒废气羽酸性蒸气的主要应用。第一部分关注NO2的蒸气和氮的混合氧化物(MON-3)。第二部分着重于肼的蒸气,例如肼,一甲基肼(MMH)和不对称二甲基肼(UDMH)。在第三部分中,对用于火箭和导弹排气羽流中有毒HCl蒸气的化学反应器传感器进行了综述。本文将讨论传感器的显着特征,例如传感期间的传导机制,传感层的厚度,影响电导率的因素,响应时间,恢复时间,可检测范围和最小可检测极限。还讨论了在无机基材上使用聚合物涂层的织物作为新型化学电阻传感器的优点和缺点。

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