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Electrochemical detection in polymer microchannels

机译:聚合物微通道中的电化学检测

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A method, using UV laser photoablation, is presented for the fabrication and the integration of an electrochemical detector in a microchannel device, where carbon microband electrodes are placed either in the bottom or in the side walls of the rectangular microchannel, The different electrochemical cell geometries are tested with a model compound (ferrocenecarboxylic acid) in 40- and 100-mu m-wide capillaries fabricated in planar polymer substrates. The experimental results are compared to numerical simulations for stagnant stream conditions. Depending on the scan rate and on the microchannel depth, the system behaves as a microband electrode until a linear diffusion field develops within the channel. The limit of detection for a one electron redox species within the 120-pL detection volume is similar to 1 fmol with both cyclic voltammetry and chronoamperometric detection. [References: 54]
机译:提出了一种使用UV激光光烧蚀的方法,用于在微通道设备中制造和集成电化学检测器,其中将碳微带电极放置在矩形微通道的底部或侧壁中。不同的电化学电池几何形状用模型化合物(二茂铁羧酸)在平面聚合物基材中制造的40和100μm宽的毛细管中测试。将实验结果与滞流条件下的数值模拟进行了比较。根据扫描速率和微通道深度,系统将充当微带电极,直到在通道内形成线性扩散场为止。使用循环伏安法和计时电流法检测时,在120 pL的检测体积内对一种电子氧化还原物质的检测极限类似于1 fmol。 [参考:54]

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