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首页> 外文期刊>ACS applied materials & interfaces >Mechanically Robust and Recyclable Cross-Linked Fibers from Melt Blown Anthracene-Functionalized Commodity Polymers
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Mechanically Robust and Recyclable Cross-Linked Fibers from Melt Blown Anthracene-Functionalized Commodity Polymers

机译:来自熔喷蒽官能化商品聚合物的机械鲁棒和可回收的交联纤维

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Melt blowing combines extrusion of a polymer melt through orifices and attenuation of the extrudate with hot high-velocity air jets to produce nonwoven fibers in a single step. Due to its simplicity and high-throughput nature, melt blowing produces more than 10% of global nonwovens (,-450 billion market). Semicrystalline thermoplastic feedstock, such as because of their facile melt dominated the melt blowing industry poly(butylene terephthalate), polyethylene, and polypropylene, have processability and thermal/chemical resistance; other amorphous commodity thermoplastics (e.g., styrenics, (meth)acrylates, etc.) are generally not employed because they lack one or both characteristics. Cross-linking commodity polymers could enable them to serve more demanding applications, but cross-linking is not compatible with melt processing, and it must be implemented after fiber formation. Here, cross-linked fibers were fabricated by melt blowing linear anthracene-functionalized acrylic polymers into fibers, which were subsequently cross-linked via anthracene-dimerization triggered by either UV light or sunlight. The resulting fibers possessed nearly 100% gel content because of highly efficient anthracene photodimerization in the solid state. Compared to the linear precursors, the anthracene-dimer cross-linked acrylic fibers exhibited enhanced thermomechanical properties suggesting higher upper service temperatures (-180 C), showing promise for replacing traditional thermoplastic-based melt blown nonwovens in certain applications. Additionally, given the dynamic nature of the anthracene-dimer cross-links at elevated temperatures (> 180 C), the resulting cross-linked fibers could be effectively recycled after use, providing new avenues toward sustainable nonwoven products.
机译:熔喷将聚合物熔体挤出通过孔口和挤出物与热高速空气喷射的挤出物蒸煮,以在一步中产生非织造纤维。由于其简单性和高通量的性质,熔化吹来产生超过全球非织造布(-450亿市场)的10%以上。 Semicrystalline热塑性原料,例如由于它们的熔体熔化占据了熔喷工业聚(对苯二甲酸丁二醇酯),聚乙烯和聚丙烯,具有加工性和热/耐化学性;其他非晶商品热塑性塑料(例如,苯乙烯类,(甲基)丙烯酸酯等)通常不采用,因为它们缺乏一个或两个特征。交联商品聚合物可以使它们能够满足更苛刻的应用,但交联与熔融加工不兼容,并且必须在纤维形成后实现。这里,通过将交联的纤维通过熔体吹入线性蒽蒽酮官能化的丙烯酸聚合物制成纤维,随后通过由UV光或阳光触发的蒽二聚化交联。所得纤维具有近100%凝胶含量,因为在固态中具有高效的蒽光电二聚体。与线性前体相比,蒽 - 二聚体交联丙烯酸纤维表现出增强的热机理,表明较高的上部服务温度(-180℃),显示在某些应用中取代传统的热塑性熔喷非织造织物的希望。另外,鉴于升高温度(> 180c)处的蒽二聚体交联的动态性质,所得到的交联纤维可以在使用后有效地再循环,为可持续的非织造产品提供新的途径。

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