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Synthesis Morphologies and Building Applications of Nanostructured Polymers

机译:纳米结构聚合物的合成形态和建筑应用

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摘要

Nanostructured polymers (NSPs) are polymeric materials in the size of nanoscale, normally consisting of nanoparticles, nanofibers, nanowires, nanospheres and other morphologies. Polymer nanoparticles (PNPs) can be fabricated either by physical methods (i.e., solvent evaporation, nanoprecipitation, salting out) or by direct nanosynthesis, using micro- or nanoemulsions with nanoreactor compartments to perform polymerization. Polymer nanofibers (PNFs) can be produced via various techniques and the most commonly used approach is electrospinning, whereby a charged solution of a polymer when exposed to an opposite high electric field is pulled into long thin nanofibers. NSPs in general exhibit enhanced properties such as excellent structural and mechanical properties, making them promising candidates for some particular building applications. A variety of PNFs have been developed and used for noise and air pollution filtration. Moreover, PNFs can also be fabricated with phase change materials which are usually employed for thermal energy storage in construction industry. In this review, we will summarize the morphologies and nanosynthesis methods of NSPs, in particular, PNPs and PNFs. In addition, representative NSPs mainly used in construction are introduced for building applications.
机译:纳米结构聚合物(NSP)是纳米级大小的聚合材料,通常由纳米颗粒,纳米纤维,纳米线,纳米球和其他形态组成。聚合物纳米颗粒(PNP)可以通过物理方法(即溶剂蒸发,纳米沉淀,盐析)或通过直接纳米合成,使用带有纳米反应器隔室的微乳液或纳米乳液进行聚合来制备。聚合物纳米纤维(PNFs)可以通过各种技术生产,最常用的方法是静电纺丝,将聚合物的带电溶液在相反的高电场下暴露在细长的纳米纤维中。 NSP通常表现出增强的性能,例如出色的结构和机械性能,使其成为某些特定建筑应用的有希望的候选者。已经开发了多种PNF,并将其用于噪音和空气污染过滤。而且,PNF也可以用相变材料制造,该相变材料通常用于建筑行业的热能存储。在这篇综述中,我们将总结NSP的形态和纳米合成方法,特别是PNP和PNF。此外,还介绍了主要用于建筑的代表性NSP用于建筑应用。

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