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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Spectroscopic and electrochemical characterization of nanostructured optically transparent carbon electrodes
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Spectroscopic and electrochemical characterization of nanostructured optically transparent carbon electrodes

机译:纳米结构的光学透明碳电极的光谱和电化学表征

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The present paper describes the results related to the optical and electrochemical characterization of thin carbon films fabricated by spin coating and pyrolysis of AZ P4330-RS photoresist. The goal of this paper is to provide comprehensive information allowing for the rational selection of the conditions to fabricate optically transparent carbon electrodes (OTCE) with specific electrooptical properties. According to our results, these electrodes could be appropriate choices as electrochemical transducers to monitor electrophoretic separations. At the core of this manuscript is the development and critical evaluation of a new optical model to calculate the thickness of the OTCE by variable angle spectroscopic ellipsometry. Such data were complemented with topography and roughness (obtained by atomic force microscopy), electrochemical properties (obtained by cyclic voltammetry), electrical properties (obtained by electrochemical impedance spectroscopy), and structural composition (obtained by Raman spectroscopy). Although the described OTCE were used as substrates to investigate the effect of electrode potential on the real-time adsorption of proteins by ellipsometry, these results could enable the development of other biosensors that can be then integrated into various CE platforms.
机译:本文描述了与通过旋涂和AZ P4330-RS光致抗蚀剂的热解制备的碳薄膜的光学和电化学表征有关的结果。本文的目的是提供全面的信息,以便合理选择制造具有特定电光特性的光学透明碳电极(OTCE)的条件。根据我们的结果,这些电极可能是监测电化学分离的电化学传感器的合适选择。该手稿的核心是新光学模型的开发和关键评估,该光学模型可以通过可变角度光谱椭偏仪计算OTCE的厚度。此类数据得到了地形和粗糙度(通过原子力显微镜获得),电化学性能(通过循环伏安法获得),电性能(通过电化学阻抗谱获得)和结构组成(通过拉曼光谱获得)的补充。尽管所描述的OTCE被用作底物,以研究通过椭圆偏光法测定电极电势对蛋白质实时吸附的影响,但这些结果仍可以开发其他可以集成到各种CE平台的生物传感器。

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