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Auxiliary electrode oxidation for naked-eye electrochemical determinations in microfluidics: Towards on-the-spot applications

机译:微流体中裸眼电化学测定的辅助电极氧化:朝向现场应用

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In this paper, we describe a new microfluidic cell to perform naked-eye electrochemical detection (NEED) through the oxidation of Ag-based auxiliary electrodes (AEs) in the presence of a cathodic current on the working electrode (WE). The chips were fabricated in polydimethylsiloxane by a simple, cost-effective, and cleanroom-free prototyping that allows reuse of each AE up to 60 times. Stainless steel microwires coated with Ag film and in electric contact to each other acted as AEs, whereas single microwires coated with Au and Ag films operated as WE and quasi-reference electrode, respectively. All the electrodes were reversibly introduced into the devices. The high contrast among nonoxidized and oxidized (black Ag2O nanostructures of up to 400?nm) Ag ensures the naked-eye monitoring of the AE oxidation extent. The number of oxidized AEs was taken as the analytical signal for semi-quantitative assays ofp-benzoquinone as proof-of-concept. In addition to the low cost, a key advantage within the point-of-use testing philosophy, further contributions from our work include: i) simultaneous semi-quantitative naked-eye tests for the same analyte from a single WE to speed up electroanalytical assays and ii) the use of the time needed to oxidize one AE as the signal, which led to quantitative assays with enhanced sensitivity for hydrogen peroxide. To attain a fully portable and user-friendly NEED method, the sensor was integrated into a handheld platform that consisted of a homemade potentiostat and gravity-assisted pumping, with which on-site tests can be performed by nontrained personnel anywhere. The portable potentiostat has the lowest cost (US$7.72) reported in the literature compared with setups to measure electric current.
机译:在本文中,我们描述了一种新的微流体细胞,通过在工作电极(We)的阴极电流存在下通过氧化Ag基辅助电极(AES)来进行裸眼电化学检测(需要)。通过简单,成本效益和洁净室的原型制造芯片以聚二甲基硅氧烷制造,允许将每个AE重用高达60次。涂有Ag胶片的不锈钢微管,彼此的电触点均作AES,而涂有AU和AG薄膜的单个微线分别为我们和准参考电极。所有电极都被可逆地引入设备中。非氧化和氧化(黑色Ag2O纳米结构高达400μm)Ag之间的高对比度确保了AE氧化程度的肉眼监测。将氧化AE的数量作为P-Benzoquinonnone的半定量测定作为概念验证的分析信号。除了低成本之外,在使用点测试哲学中,我们的工作进一步贡献包括:i)同时半定量的裸眼药对来自单个的同一分析物的同时进行半定量裸眼药测试,以加速电解学测定并且ii)使用将一种AE氧化为信号所需的时间,这导致了具有增强过氧化氢敏感性的定量测定。为了获得完全便携和用户友好的需求方法,传感器被集成到手持平台中,该平台包括自制电位仪和重力辅助泵送,其中现场测试可以在任何地方进行非托管人员进行。与测量电流的设置相比,便携式电位托特在文献中报告的最低成本(7.72美元)。

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