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Preparation and Application of Conductive Polyaniline-Coated Thermally Expandable Microspheres

机译:导电聚苯胺涂覆的热膨胀性微球的制备及应用

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摘要

The thermally expandable microspheres (TEMs) were prepared through suspension polymerization with acrylonitrile (AN), methyl methacrylate (MMA) and methyl acrylate (MA) as the main monomers. Simultaneously, iso-pentane, n-hexane, iso-octane and other low-boiling hydrocarbons were prepared as blowing agents under two conditions, including high-pressure nitrogen and atmospheric conditions. The above physical foaming microspheres have a core-shell structure and excellent foaming effects. A layer of polyaniline (PANI) was deposited on the surface of the prepared TEMs by emulsion polymerization to obtain conductive and heat-expandable microspheres. Afterwards, the foaming ink was prepared by mixing the conductive TEMs and water-based ink. Finally, a conductive three-dimensional picture was obtained by screen-printing technology. This paper specifically focuses on the effects of particle size, morphology and the thermal expansion properties of the microspheres. The present research methods expect to obtain microspheres with a high foaming ratio, uniform particle size and antistatic properties, which may be applied to physical foaming ink.
机译:通过用丙烯腈(An),​​甲基丙烯酸甲酯(MMA)和丙烯酸甲酯(MA)作为主要单体,通过悬浮聚合制备可热膨胀的微球(TEM)。同时,制备异戊烷,正己烷,异辛烷和其他低沸点烃作为在两个条件下的发泡剂,包括高压氮和大气条件。上述物理发泡微球具有核心壳结构和优异的发泡效果。通过乳液聚合将一层聚苯胺(PANI)沉积在制备温度的表面上,得到导电和可热膨胀的微球。然后,通过混合导电温度和水基油墨来制备发泡油墨。最后,通过丝网印刷技术获得导电三维图像。本文专注于微球的粒度,形态和热膨胀性能的影响。本研究方法期望获得具有高发泡率,均匀粒度和抗静电性能的微球,其可以应用于物理发泡油墨。

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