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首页> 外文期刊>Synthetic Metals >Micropatterning of conducting polymer tracks on plasma treated flexible substrate using vapor phase polymerization-mediated inkjet printing
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Micropatterning of conducting polymer tracks on plasma treated flexible substrate using vapor phase polymerization-mediated inkjet printing

机译:使用气相聚合介导的喷墨印刷在等离子处理的柔性基板上对导电聚合物轨迹进行微图案化

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摘要

A facile strategy to pattern a conducting polymer on various flexible substrates is reported using vapor phase polymerization-mediated inkjet printing. Complex polypyrrole patterns were obtained via oxida-tion polymerization of vaporized monomer on the inkjet-printed oxidant patterns. The patterned lines are readily controlled by inkjet printing with the high resolution of micrometer scale. FT-IR attenuated total reflection analysis and X-ray photoelectron spectroscopy were conducted in order to confirm the poly-merization of pyrrole monomer. This process provided highly conductive polymer patterns of polypyrrole with the sheet resistance of 2.8 × 10~3 Ω/□, the minimum line width of ca. 60 μm and the film thickness of ca. 450 nm. Furthermore, metallic copper pattern was prepared on previously patterned polypyrrole architectures by electroless plating as a practical application.
机译:据报道,使用气相聚合介导的喷墨印刷在各种柔性基板上构图导电聚合物的简便策略。通过汽化单体在喷墨印刷的氧化剂图案上的氧化聚合获得复杂的聚吡咯图案。通过具有微米级高分辨率的喷墨印刷容易地控制图案化的线。为了证实吡咯单体的聚合,进行了FT-IR衰减全反射分析和X射线光电子能谱。该工艺提供了聚吡咯的高导电性聚合物图案,其薄层电阻为2.8×10〜3Ω/□,最小线宽约为。膜厚约60μm 450 nm。此外,作为实际应用,通过化学镀在先前图案化的聚吡咯结构上制备了金属铜图案。

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