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Microtexturing of the Conductive PEDOT:PSS Polymer for Superhydrophobic Organic Electrochemical Transistors

机译:用于超疏水有机电化学晶体管的导电PEDOT:PSS聚合物的微观结构

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摘要

Superhydrophobic surfaces are bioinspired, nanotechnology artifacts, which feature a reduced friction coefficient, whereby they can be used for a number of very practical applications including, on the medical side, the manipulation of biological solutions. In this work, we integrated superhydrophobic patterns with the conducting polymer PEDOT:PSS, one of the most used polymers in organic electronics because highly sensitive to ionized species in solution. In doing so, we combined geometry and materials science to obtain an advanced device where, on account of the superhydrophobicity of the system, the solutions of interest can be manipulated and, on account of the conductive PEDOT:PSS polymer, the charged molecules dispersed inside can be quantitatively measured. This original substrate preparation allowed to perform electrochemical measurements on ionized species in solution with decreasing concentration down to 10−7 molar. Moreover, it was demonstrated the ability of the device of realizing specific, combined time and space resolved analysis of the sample. Collectively, these results demonstrate how a tight, interweaving integration of different disciplines can provide realistic tools for the detection of pathologies. The scheme here introduced offers breakthrough capabilities that are expected to radically improve both the pace and the productivity of biomedical research, creating an access revolution.
机译:超疏水表面是受生物启发的纳米制品,具有降低的摩擦系数,因此可用于许多非常实际的应用,包括医学方面的生物溶液处理。在这项工作中,我们将超疏水图案与导电聚合物PEDOT:PSS集成在一起,后者是有机电子产品中最常用的聚合物之一,因为它对溶液中的离子种类非常敏感。为此,我们将几何学和材料科学相结合,获得了一种先进的设备,其中由于系统的超疏水性,可以控制目标溶液,并且由于导电的PEDOT:PSS聚合物,带电分子分散在内部可以定量测量。这种原始的底物制备方法可以对溶液中的离子化物种进行电化学测量,浓度降低到10 -7 摩尔。此外,还展示了该设备实现对样品进行时间,空间分辨的特定,组合分析的能力。总的来说,这些结果证明了不同学科的紧密交织的整合如何为病理学检测提供现实的工具。这里介绍的方案提供了突破性的功能,有望从根本上改善生物医学研究的速度和生产率,从而掀起一场接入革命。

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