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首页> 外文期刊>Macromolecular materials and engineering >Processing of the Multifunctional Polymer Poly(phenylene methylene) into Fibers, Films, Foams, and Microspheres
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Processing of the Multifunctional Polymer Poly(phenylene methylene) into Fibers, Films, Foams, and Microspheres

机译:处理的多功能聚合物保利(苯亚甲基)纤维、电影、泡沫、微球

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摘要

Abstract Poly(phenylene methylene) (PPM) has recently emerged as a promising multifunctional polymer, requiring straightforward one‐step synthesis to achieve high molar mass and featuring a range of attractive properties. Its processability, however, has not been explored in detail to date. Therefore, this study presents a comprehensive investigation of the processability of PPM into a wide range of forms by employing various polymer processing techniques. Thin fibers (diameter ≈100 μm) over 1 km in length and shorter thick fibers (diameter ≈1 mm) are produced by melt spinning. Although no crystallinity is observed, the fibers surprisingly exhibit pronounced birefringence. The capability for waveguiding red light within the fibers is also demonstrated. Furthermore, films with a broad thickness range, spanning nanometer to millimeter length scales, are fabricated using different approaches such as spin‐coating, hot pressing, and die casting. All films feature a very smooth and crack‐free surface topography. Additionally, freestanding foams of PPM are obtained by foaming highly concentrated solutions, and quasi‐monodisperse microspheres are prepared by a microfluidic high‐throughput emulsification. The material properties of these different specimen forms are investigated and discussed for implementation as products ranging from plastic optical fibers and light emitting diodes, to protective coatings and packaging, as well as insulators and separation membranes.
机译:<标题亚甲基)(PPM)最近成为一个有前途的多功能聚合物,需要简单的一步合成法来实现高摩尔质量和特色的有吸引力的特性。然而,迄今为止尚未详细探讨。因此,本研究提出了一种全面PPM加工性能的调查广泛的形式采用各种聚合物处理技术。μm)超过1公里厚的纤维长度和短(≈1毫米直径)是由熔融纺丝。虽然没有观察到的结晶度,纤维令人惊讶的是表现出明显的双折射。波导红光的能力纤维也证明。电影广泛的厚度范围,生成纳米毫米长度尺度使用不同的方法如捏造自旋量涂层、热压和压铸。电影特性非常光滑和裂纹的自由表面形貌。PPM的泡沫发泡得到的高度集中解决方案,和准单分散的微球是由一个微流体高吞吐量乳化。这些不同的标本形式的属性研究和讨论了实现从塑料光纤和产品防护涂料和发光二极管包装,以及绝缘体和分离膜。

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