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PEDOT:PSS: a Conductive and Flexible Polymer for Sensor Integration in Organ-on-Chip Platforms

机译:PEDOT:PSS:用于传感器在片上平台中的传感器集成的导电和柔性聚合物

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Sensing and stimulating microstructures are necessary to develop more specialized and highly accurate Organ-on-Chip (OOC) platforms. In this paper, we present the integration of a conductive polymer, Poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS), on a stretchable membrane, core element of an Heart-on-Chip. The electrical conductivity along with its biocompatibility, high transparency (≈88%) and mechanical elasticity (≈1.2 GPa) make this material a candidate to develop novel microstructures for electrical monitoring and stimulation of cells in flexible-substrate based OOCs. Microstructures with different shapes and geometries of PEDOT:PSS embedded in a 9 μm-thick Polydimethylsiloxane (PDMS) membrane are developed following a wafer-level fabrication approach. PEDOT:PSS layers between 120 nm and 300 nm are obtained by varying the deposition conditions. The layers are successfully patterned and microstructures with lateral dimensions down to 2 μm. The obtained results indicate that this polymer is a suitable material for microfabrication of sensing and stimulating elements in OOC platforms.
机译:感测和刺激微观结构是开发更专业和高精度的片上(OOC)平台所必需的。在本文中,我们介绍了导电聚合物,聚(3,4-亚乙基噻吩)聚苯乙烯磺酸盐(PEDOT:PSS)的整合,在可拉伸膜上,芯片的核心元素。电导率以及其生物相容性,高透明度(≈88%)和机械弹性(≈1.2GPa)使得该材料制成开发基于柔性基材的柔性基材的电池的新微观结构的候选物。用晶片水平制造方法开发出9μm厚的聚二甲基硅氧烷(PDMS)膜中嵌入9μm厚的聚二甲基硅氧烷(PDMS)膜中的PSS的微观结构。 PEDOT:通过改变沉积条件,获得120nm和300nm之间的PSS层。将层成功地图案化和微结构,横向尺寸下降至2μm。所得结果表明,该聚合物是用于微生物和刺激OOC平台中的感测和刺激元件的合适材料。

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