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首页> 外文期刊>Analytical chemistry >Dual-Electrode Electrochemical Detection for Poly(dimethylsiloxane)-Fabricated Capillary Electrophoresis Microchips
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Dual-Electrode Electrochemical Detection for Poly(dimethylsiloxane)-Fabricated Capillary Electrophoresis Microchips

机译:聚(二甲基硅氧烷)-毛细管电泳微芯片的双电极电化学检测

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The development of a poly(dimethylsiloxane)-based (PDMS-based) microchip electrophoresis system employing dual-electrode electrochemical detection is described. This is the first report of dual-electrode electrochemical detection in a microchip format and of electrochemical detection on chips fabricated from PDMS. The device described in this paper consists of a top layer of PDMS containing the separation and injection channels and a bottom glass layer onto which gold detection electrodes have been deposited. The two layers form a tight reversible seal, eliminating the need for high-temperature bonding, which can be detrimental to electrode stability. The channels can also be temporarily removed for cleaning, significantly extending the lifetime of the chip. The performance of the chip was evaluated using catechol as a test compound. The response was linear from 10 to 500 μM with an LOD (S/N=3) of 4 μM and a sensitivity of 45.9 pA/μM. Collection efficiencies for catechol ranged from 28.7 to 25.9% at field strengths between 200 and 400 V/cm. Dual-electrode detection in the series configuration was shown to be useful for the selective monitoring of species undergoing chemically reversible redox reactions and for peak identification in the electropherogram of an unresolved mixture.
机译:描述了采用双电极电化学检测的聚二甲基硅氧烷基(PDMS基)微芯片电泳系统的开发。这是微芯片形式的双电极电化学检测和由PDMS制造的芯片上电化学检测的第一份报告。本文描述的设备由包含分离和注入通道的PDMS顶层和在其上已沉积金检测电极的底层玻璃层组成。这两层形成紧密的可逆密封,从而消除了对高温焊接的需要,而高温焊接可能会损害电极的稳定性。通道也可以临时取下进行清洁,从而大大延长了芯片的使用寿命。使用儿茶酚作为测试化合物评估芯片的性能。响应从10到500μM是线性的,LOD(S / N = 3)为4μM,灵敏度为45.9 pA /μM。在200至400 V / cm的场强下,邻苯二酚的收集效率为28.7%至25.9%。结果表明,串联配置的双电极检测对于选择性监测正在进行化学可逆氧化还原反应的物质以及未溶解混合物的电泳图中的峰识别非常有用。

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