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Integration of ring nanoelectrodes into microwell for the bioelectrochemical analysis in sub-picoliter volumes

机译:将环纳米电极整合到微孔中,用于亚皮升以下体积的生物电化学分析

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We report here the fabrication and the electrochemical characterization of recessed ring nanoelectrodes (RNE) integrated in microwell arrays. Such configuration has all advantages of microelectrodes arrays but is more suitable for electrochemical analysis in sub-picoliter volumes. The technological process based on the reactive ion etching of a SiO/Ti/Pt/Ti/SiO stacking is optimized in order to develop for the first time functional electrochemical microdevices on glass substrate. Electrochemical characterizations are finally conducted in order to study the amperometric behavior of recessed ring nanoelectrodes and to define design rules for optimizing the electrochemical detection properties of RNE-based microwell arrays. Finally, a “generation - collection mode” approach is proposed to define the effective collection factor of RNE into microwell. All these results demonstrate that recessed ring nanoelectrode arrays are fitted to the statistic analysis of single cells and to the detection of electrochemical species at the nanoscale.
机译:我们在这里报告集成在微孔阵列中的凹环纳米电极(RNE)的制造和电化学表征。这种配置具有微电极阵列的所有优点,但更适合于亚皮升以下的电化学分析。优化了基于反应离子刻蚀SiO / Ti / Pt / Ti / SiO叠层的工艺流程,以便首次在玻璃基板上开发功能性电化学微型器件。最后进行电化学表征,以研究凹环纳米电极的安培行为,并定义设计规则,以优化基于RNE的微孔阵列的电化学检测性能。最后,提出了一种“生成-收集模式”的方法来定义RNE进入微孔的有效收集因子。所有这些结果表明,凹环纳米电极阵列适合于单细胞的统计分析以及纳米级电化学物种的检测。

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