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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Electroanalytical cells pencil drawn on PVC supports and their use for the detection in flexible microfluidic devices
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Electroanalytical cells pencil drawn on PVC supports and their use for the detection in flexible microfluidic devices

机译:在PVC支撑件上绘制的电催化细胞铅笔及其用于柔性微流体装置的检测

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摘要

A simple, effective and low-cost technique is here presented for assembling flexible and robust electrochemical devices on transparent PVC supports, using ordinary tools, all installed on a commercial desktop digitally controlled plotter/cutter. Small diamond burs were first set up to rough precise and well defined patterns on the surface of smooth and flexible PVC transparent films. Subsequently, reference, counter and working carbon electrodes were drawn onto abraded patterns by using micropencils (4B graphite leads, 0.5 mm in diameter), in their turn installed on the plotter/cutter. The effective active working surface of electrochemical cells was then defined by a thin adhesive strip or by covering the patterned support with a suitably cut adhesive layer, depending upon whether they were intended for use in batch or drop mode. After optimization of fabrication parameters, such as pressure and speed adopted during bur abrasion and pencil drawing, the electrochemical characterization of these cells was performed by using potassium hexacyanoferrate(II) as redox probe. Voltammetric responses displayed a good inter-device reproducibility (5.6%), thus confirming the effectiveness of this easy and fast assembling strategy. These PVC-based pencil-drawn electrochemical cells were then integrated as thin-layer detectors in adhesive-tape based microfluidic channels, cut and prepared in their turn using the digitally controlled plotter/cutter. These detectors offer the advantage given by the impermeability of PVC supports, thus avoiding absorption of the flowing carrier and consequent analyte broadening, instead occurring when electrochemical cells are pencil drawn on hydrophilic materials as paper. After optimization of the complete fabrication process, the effectiveness of these devices was tested by a proof-of-concept direct quantification of ascorbic acid in commonly used drugs.
机译:这里提出了一种简单,有效和低成本的技术,用于在透明的PVC支架上组装柔性和坚固的电化学设备,使用普通工具,所有这些都安装在商用台式数字控制的绘图仪/刀具上。首先在光滑和柔性PVC透明薄膜表面上设置小型金刚石Burs粗糙精确,定义明确的图案。随后,通过使用微量油印(4B石墨引线,直径为0.5mm),将参考,计数器和工作碳电极拉到磨损的图案上,转动安装在绘图仪/切割器上。然后通过薄粘合带或通过用适当切割的粘合剂层覆盖图案化载体的有效活性工作表面,这取决于它们是否旨在用于批料或液滴模式。在优化制造参数之后,例如在Bur磨损和铅笔拉伸期间采用的压力和速度,通过使用六氰基甲甲酸钾(II)作为氧化还原探针进行这些细胞的电化学表征。伏安响应显示出良好的设备间再现性(5.6%),从而确认了这种简单快速的组装策略的有效性。然后将这些基于PVC的铅笔绘制的电化学电池作为薄层探测器集成为粘合带基的微流体通道,使用数字控制的绘图器/切割器切割和制备。这些探测器提供了通过PVC载体的不渗透率给出的优点,从而避免了流动载体的吸收和随后的分析物展现,而是当电化学电池在亲水材料中作为纸张绘制的铅笔时出现。在优化完整的制造过程之后,通过常用药物中抗坏血酸的概念证据直接定量来测试这些装置的有效性。

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