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Evaluation of a Microfluidic Device for the Electrochemical Determination of Halide Content in Ionic Liquids

机译:电化学测定离子液体中卤化物含量的微流体装置的评估

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A microfluidic device designed for electrochemical studies on a microliter scale has been utilized for the examination of impurity levels in ionic liquids (ILs). Halide impurities are common following IL synthesis, and this study demonstrates the ability to quantify low concentrations of halide in a range of ILs to levels of approx5 ppm, even in ILs not currently measurable using other methods such as ion chromatography. To validate the mixer device, the electrochemistry of ferrocene was also examined and compared with spectroscopic and bulk electrochemistry measurements. An automated "sample preparation, delivery, and calibration" method was developed, and the chip successfully used for linear sweep, cyclic voltammetry (under both quiescent and steady-state flowing conditions), square wave voltammetry, and differential pulse voltammetry. An effective method of electrochemically cleaning the electrodes is also presented.
机译:设计用于微升规模的电化学研究的微流控设备已用于检查离子液体(IL)中的杂质水平。 IL合成后,卤化物杂质很常见,这项研究证明了即使在目前无法使用其他方法(例如离子色谱法)测量的IL中,也能够定量在一系列IL中低浓度卤化物的能力,浓度约为5 ppm。为了验证混合器设备,还检查了二茂铁的电化学,并将其与光谱和本体电化学测量进行了比较。开发了一种自动化的“样品制备,递送和校准”方法,该芯片成功用于线性扫描,循环伏安法(在静态和稳态流动条件下),方波伏安法和差分脉冲伏安法。还提出了一种电化学清洁电极的有效方法。

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