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Flattened‐Top Domical Droplet Formed by a Poly(pyrrole) Membrane

机译:夷为平地的顶穹窿式的液滴形成的聚吡咯膜)

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摘要

Abstract Polypyrrole (PPy) is a promising conductive polymer (CP) with electrical versatility, easy synthesis and functionalization, stability, and biocompatibility. Diverse architectures have been adopted to improve PPy performance, but the direct and precise patterning of various architectures remains challenging. Here, the unique formation of a PPy membrane on the air/water interface of a droplet solution containing ammonium persulfate and phytic acid is investigated. When a PPy thin film forms on the air/water interface, the top of the droplet rapidly flattens. The formation procedure and final structure of the PPy thin film are visualized and quantitatively investigated. Unlike the typical globular structure of PPy, the self‐assembled PPy film surface fabricated in this study is very organized and regularly shaped. This well‐ordered membrane may have a very high buckling strength greater than the surface tension of the solution. The proposed precise fabrication method is simple and inexpensive for fabricating patterned functional membranes. These results provide new insight into the fabrication of CP and their applications in various practical electromaterial engineering fields.
机译:<标题是一个有前途的导电聚合物(CP)合成和电气多才多艺,容易功能化、稳定性和生物相容性。采用提高PPy性能,但是直接和精确的模式不同架构仍然是具有挑战性的。独特的PPy膜的形成空气/水界面的液滴的解决方案包含过硫酸铵和植酸调查。空气/水界面,液滴的顶部迅速趋于平缓。最后的PPy薄膜的结构可视化和定量研究。PPy不像典型的球状结构,自我组装PPy膜表面组装这个研究非常有组织,定期的形状。非常高的抗弯强度大于解决方案的表面张力。精确的制造方法简单和便宜的制作图案的功能膜。CP的制造及其应用各种实用的电子器材工程字段。

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