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One-step in situ synthesis of polyamide microcapsules with inorganic payload and their transformation into responsive thermoplastic composite materials

机译:一步法原位合成具有无机有效载荷的聚酰胺微囊及其转化为响应性热塑性复合材料

摘要

Well-dispersed loads of finely powdered metals, metal oxides, several carbon allotropes or nanoclays are incorporated into highly porous polyamide 6 microcapsules in controllable amounts via an original one-step in situ fabrication technique. It is based on activated anionic polymerization (AAP) of ε-caprolactam in a hydrocarbon solvent performed in the presence of the respective micro- or nanosized loads. The forming microcapsules with typical diameters of 25-50 µm entrap up to 40 wt% of load. Their melt processing produces hybrid thermoplastic composites. Mechanical, electric conductivity and magnetic response measurements show that transforming of in situ loaded microcapsules into composites by melt processing (MP) is a facile and rapid method to fabricate materials with high mechanical resistance and electro-magnetic characteristics sufficient for many industrial applications. This novel concept requires low polymerization temperatures, no functionalization or compatibilization of the loads and it is easy to scale up at industrial production levels.
机译:精细分散的金属,金属氧化物,几种碳同素异形体或纳米粘土的分散良好的负载量可以通过原始的一步式原位制造技术以可控制的量掺入高度多孔的聚酰胺6微胶囊中。它基于ε-己内酰胺在烃溶剂中的活化阴离子聚合(AAP),在相应的微米或纳米级负载下进行。典型直径为25-50 µm的成型微胶囊会捕获高达40 wt%的负载。他们的熔体加工过程产生混合热塑性复合材料。机械,电导率和磁响应测量结果表明,通过熔融加工(MP)将原位负载的微胶囊转变为复合材料是一种简便,快速的方法,可以制造出具有足够高的机械电阻和电磁特性的材料,足以满足许多工业应用的需要。这种新颖的概念要求聚合温度低,不需要负载的功能化或相容化,并且易于在工业生产水平上扩大规模。

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