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离子液体高温气体传感器阵列。

Ionic liquid high-temperature gas sensor array.

作者信息

Jin Xiaoxia, Yu Lei, Garcia Diego, Ren Rex X, Zeng Xiangqun

机构信息

Department of Chemistry, Oakland University, Rochester, Michigan 48309, USA.

出版信息

Anal Chem. 2006 Oct 1;78(19):6980-9. doi: 10.1021/ac0608669.

Abstract

A novel sensor array using seven room-temperature ionic liquids (ILs) as sensing materials and a quartz crystal microbalance (QCM) as a transducer was developed for the detection of organic vapors at ambient and elevated temperatures. Ethanol, dichloromethane, benzene, and heptane were selected as representative gas analytes for various kinds of environmental pollutants and common industrial solvents. The QCM/IL sensors responded proportionately and reversibly to the organic vapor concentrations (i.e., ethanol, heptane, and benzene) in the gas phase from 0 to 100% saturation at room and elevated temperatures (e.g., 120 degrees C) but deviated from this linear relationship at high concentrations for dichloromethane, a highly volatile compound. Linear discriminant analysis was used to analyze the sensing patterns. Excellent classifications were obtained for both known and unknown concentrations of vapor samples. The correct classifications were 100% for known concentration samples and 96% for samples with unknown concentrations. Thermodynamics and ATR-FT-IR studies were conducted to understand specific molecular interactions, the strength of the interaction between ILs and organic vapors, and the degree of ordering that takes place upon dissolution of the vapors in ILs. The different response intensity of the QCM/IL sensors to the organic vapors depends on the different solubilities of organic vapors in ILs and varying molecular/ion interactions between each organic vapor and IL. The diverse set of IL studied showed selective responses due to structural differences. Therefore, a sensor array of ILs would be able to effectively differentiate different vapors in pattern recognitions, facilitating discrimination by their distinctive patterns in response to organic vapors in both room and high temperatures.

摘要

开发了一种新型传感器阵列,它使用七种室温离子液体(ILs)作为传感材料,并以石英晶体微天平(QCM)作为换能器,用于在环境温度和高温下检测有机蒸汽。选择乙醇、二氯甲烷、苯和庚烷作为各类环境污染物和常见工业溶剂的代表性气体分析物。QCM/IL传感器在室温和高温(例如120摄氏度)下,对气相中0至100%饱和度的有机蒸汽浓度(即乙醇、庚烷和苯)成比例且可逆地响应,但对于高挥发性化合物二氯甲烷,在高浓度时偏离了这种线性关系。使用线性判别分析来分析传感模式。对于已知和未知浓度的蒸汽样品都获得了出色的分类结果。已知浓度样品的正确分类率为100%,未知浓度样品的正确分类率为96%。进行了热力学和ATR-FT-IR研究,以了解特定的分子相互作用、ILs与有机蒸汽之间相互作用的强度以及蒸汽溶解在ILs中时发生的有序程度。QCM/IL传感器对有机蒸汽的不同响应强度取决于有机蒸汽在ILs中的不同溶解度以及每种有机蒸汽与IL之间不同的分子/离子相互作用。所研究的不同ILs集合由于结构差异而表现出选择性响应。因此,ILs传感器阵列将能够在模式识别中有效区分不同的蒸汽,通过它们在室温和高温下对有机蒸汽的独特响应模式来促进鉴别。

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