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Characterization of Room-Temperature Ionic Liquids to Study the Electrochemical Activity of Nitro Compounds

机译:表征室温离子液体以研究硝基化合物的电化学活性

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摘要

Over the past few years, room-temperature ionic liquid (RTIL) has evolved as an important solvent-cum-electrolyte because of its high thermal stability and excellent electrochemical activity. Due to these unique properties, RTILs have been used as a solvent/electrolyte/mediator in many applications. There are many RTILs, which possess good conductivity as well as an optimal electrochemical window, thus enabling their application as a transducer for electrochemical sensors. Nitroaromatics are a class of organic compounds with significant industrial applications; however, due to their excess use, detection is a major concern. The electrochemical performance of a glassy carbon electrode modified with three different RTILs, [EMIM][BF ], [BMIM][BF ] and [EMIM][TF N], has been evaluated for the sensing of two different nitroaromatic analytes: 2,6-dinitrotoluene (2,6 DNT) and ethylnitrobenzene (ENB). Three RTILs have been chosen such that they have either a common anion or cation amongst them. The sensory response has been measured using square wave voltammetry (SQWV). We found the transducing ability of [EMIM][BF ] to be superior compared to the other two RTILs. A low limit of detection (LOD) of 1 ppm has been achieved with a 95% confidence interval for both the analytes. The efficacy of varying the cationic and anionic species of RTIL to obtain a perfect combination has been thoroughly investigated in this work, which shows a novel selection process of RTILs for specific applications. Moreover, the results obtained from testing with a glassy carbon electrode (GCE) have been replicated using a miniaturized sensor platform that can be deployed easily for on-site sensing applications.
机译:在过去的几年中,室温离子液体(RTIL)由于其高的热稳定性和出色的电化学活性而发展成为一种重要的溶剂兼电解质。由于这些独特的特性,RTIL在许多应用中已被用作溶剂/电解质/介体。有许多RTIL,它们具有良好的导电性以及最佳的电化学窗口,因此使其能够用作电化学传感器的传感器。硝基芳族化合物是一类具有重要工业应用的有机化合物。但是,由于它们的过度使用,检测是一个主要问题。为评估两种不同的硝基芳香族分析物,已评估了用三种不同的RTILs [EMIM] [BF],[BMIM] [BF]和[EMIM] [TF N]修饰的玻璃碳电极的电化学性能:2, 6-二硝基甲苯(2,6 DNT)和乙基硝基苯(ENB)。选择了三种RTIL,以使它们之间具有共同的阴离子或阳离子。感觉反应已使用方波伏安法(SQWV)进行了测量。我们发现[EMIM] [BF]的转导能力优于其他两个RTIL。两种分析物的检测限(LOD)均为1 ppm,置信区间为95%。在这项工作中,已经彻底研究了改变RTIL的阳离子和阴离子种类以获得完美结合的功效,这显示了针对特定应用的RTIL的新型选择过程。而且,使用玻璃碳电极(GCE)进行测试获得的结果已使用微型传感器平台复制,该传感器平台可轻松部署用于现场传感应用。

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