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在空气温度和湿度可变条件下,化学敏感层对氨气存在的电阻变化分析。

Analysis of the Resistance Change of Chemosensitive Layers to the Presence of Ammonia Vapors under Variable Conditions of Air Temperature and Humidity.

作者信息

Zajączkowska Hanna, Brochocka Agnieszka, Nowak Aleksandra, Wojtkiewicz Mateusz

机构信息

Laboratory of Respiratory Protective Equipment, Department of Personal Protective Equipment, Central Institute for Labour Protection-National Research Institute, Wierzbowa 48, 90-133 Łódź, Poland.

Department of Molecular Physics, Faculty of Chemistry, Łódź University of Technology, Żeromskiego 116, 90-924 Łódź, Poland.

出版信息

Polymers (Basel). 2023 Jan 13;15(2):420. doi: 10.3390/polym15020420.

Abstract

The developed chemosensitive layers consisted of multi-walled carbon nanotubes (MWCNTs), reduced graphene oxide (rGO), and a conductive polymer (polyaniline-PANI) in a polymeric matrix (a polystyrene solution in methylene chloride). The layers were challenged with a test gas to determine the optimum variant in terms of sensitivity to the selected analyte and the repeatability of results. In terms of individual components, the greatest percentage change in resistance (32%) and the best repeatability were found for chemosensitive layers containing a PANI salt in the polymeric matrix. Even greater changes in resistance were exhibited by sensors containing more than one active component in the matrix: 45% for PANI + MWCNTs and 75% for PANI + rGO. The presented method of thin-layer deposition was shown to be suitable for the production of sensitive and functional sensors of ammonia vapors. The developed sensors were characterized by high repeatability and sensitivity to a harmful substance that constitutes an inhalation hazard to workers. The sensors were also analyzed for their durability and recovery as well as the ability to function under varying temperature and humidity conditions.

摘要

所制备的化学敏感层由多壁碳纳米管(MWCNTs)、还原氧化石墨烯(rGO)和导电聚合物(聚苯胺 - PANI)组成,并置于聚合物基质(二氯甲烷中的聚苯乙烯溶液)中。用测试气体对这些层进行测试,以确定在对选定分析物的灵敏度和结果可重复性方面的最佳变体。就单个组分而言,在聚合物基质中含有聚苯胺盐的化学敏感层的电阻变化百分比最大(32%)且具有最佳的可重复性。基质中含有不止一种活性成分的传感器表现出更大的电阻变化:聚苯胺 + 多壁碳纳米管为45%,聚苯胺 + 还原氧化石墨烯为75%。所展示的薄层沉积方法适用于生产对氨蒸气敏感且具有功能的传感器。所开发的传感器具有高可重复性,对构成对工人吸入危害的有害物质具有高灵敏度。还对传感器的耐久性、恢复能力以及在不同温度和湿度条件下的功能进行了分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18be/9867172/a4867b24aa00/polymers-15-00420-g001a.jpg

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