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Potentiometric detection of chemical vapors using molecularly imprinted polymers as receptors

机译:使用分子印迹聚合物作为受体的电位法检测化学蒸气

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Ion-selective electrode (ISE) based potentiometric gas sensors have shown to be promising analytical tools for detection of chemical vapors. However, such sensors are only capable of detecting those vapors which can be converted into ionic species in solution. This paper describes for the first time a polymer membrane ISE based potentiometric sensing system for sensitive and selective determination of neutral vapors in the gas phase. A molecularly imprinted polymer (MIP) is incorporated into the ISE membrane and used as the receptor for selective adsorption of the analyte vapor from the gas phase into the sensing membrane phase. An indicator ion with a structure similar to that of the vapor molecule is employed to indicate the change in the MIP binding sites in the membrane induced by the molecular recognition of the vapor. The toluene vapor is used as a model and benzoic acid is chosen as its indicator. Coupled to an apparatus manifold for preparation of vapor samples, the proposed ISE can be utilized to determine volatile toluene in the gas phase and allows potentiometric detection down to parts per million levels. This work demonstrates the possibility of developing a general sensing principle for detection of neutral vapors using ISEs.
机译:基于离子选择电极(ISE)的电位气体传感器已被证明是用于检测化学蒸气的有前途的分析工具。但是,这样的传感器仅能够检测可在溶液中转化成离子种类的那些蒸气。本文首次描述了基于聚合物膜ISE的电位传感系统,用于灵敏和选择性地测定气相中性蒸气。分子印迹聚合物(MIP)被结合到ISE膜中,并用作受体,用于将分析物蒸气从气相选择性吸附到传感膜相中。具有与蒸气分子相似的结构的指示剂离子用于指示由蒸气的分子识别引起的膜中MIP结合位点的变化。甲苯蒸气用作模型,苯甲酸作为指示剂。所提出的ISE耦合到用于制备蒸气样品的设备歧管上,可用于确定气相中的挥发性甲苯,并允许电位计检测低至百万分之几的水平。这项工作证明了开发使用ISE检测中性蒸气的通用传感原理的可能性。

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