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首页> 外文期刊>Analytical chemistry >All-Solid-State Reference Electrodes Based on Colloid-Imprinted Mesoporous Carbon and Their Application in Disposable Paper-based Potentiometric Sensing Devices
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All-Solid-State Reference Electrodes Based on Colloid-Imprinted Mesoporous Carbon and Their Application in Disposable Paper-based Potentiometric Sensing Devices

机译:基于胶体印迹中孔碳的全固态参比电极及其在一次性纸基电位传感器中的应用

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摘要

Reference electrodes are used in almost every electroanalytical measurement. Here, all-solid-state reference electrodes are described that employ colloid-imprinted mesoporous (CIM) carbon as solid contact and a poly(vinyl chloride) reference membrane to contact the sample. Such a reference membrane is doped with a moderately hydrophilic ionic liquid and a hydrophobic redox couple, leading to well-defined constant potentials at the interfaces of this membrane to the sample and to the solid contact, respectively. Due to the intrinsic properties of CIM carbon, reference electrodes with a CIM carbon solid contact exhibit excellent resistance to common interfering agents such as light and O-2, with outstanding potential stability in continuous potentiometric measurements. The potential drift of CIM carbon-based reference electrodes without redox couple is as low as 1.7 mu V/h over 110 h, making them the most stable all-solid-state reference electrodes reported so far. To demonstrate the compatibility of CIM carbon-based reference electrodes with miniaturized potentiometric systems, these reference electrodes were integrated into paper-based potentiometric sensing devices, successfully replacing the conventional reference electrode with its reference electrolyte solution. As a proof of concept, disposable paper-based Cl sensing devices that contain stencil-printed Ag/AgCl-based Cl- selective electrodes and CIM carbon-based reference electrodes were constructed. These sensing devices are inexpensive, easy to use, and offer highly reproducible Cl- measurements with sample volumes as low as 10 mu L.
机译:参比电极几乎用于所有电分析测量中。在此,介绍了采用固态烙印的介孔(CIM)碳作为固态触点和聚(氯乙烯)参比膜接触样品的全固态参比电极。这种参比膜掺有适度亲水的离子液体和疏水性的氧化还原对,从而在该膜与样品和固体接触的界面处分别产生明确的恒定电位。由于CIM碳的固有特性,具有CIM碳固体接触的参比电极表现出出色的耐普通干扰剂(例如光和O-2)的性能,并且在连续电位测量中具有出色的电位稳定性。没有氧化还原对的CIM碳基参比电极在110小时内的电势漂移低至1.7μV / h,使其成为迄今为止报道的最稳定的全固态参比电极。为了证明CIM碳基参比电极与微型电位计系统的兼容性,这些参比电极被集成到纸基电位计传感设备中,成功地用其参比电解质溶液替代了常规参比电极。作为概念证明,构建了包含纸版印刷的基于Ag / AgCl的Cl选择电极和基于CIM碳的参比电极的一次性纸基Cl传感设备。这些传感设备价格便宜,易于使用,并提供了可重现的Cl-测量,样品体积低至10μL。

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