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Osmosis Based Method Drives the Self-Assembly of Polymeric Chains into Micro- and Nanostructures

机译:基于渗透的方法将聚合物链的自组装驱动为微米和纳米结构

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摘要

Polymers derived from monomers with a variety of functionalities provide materials with a vast range of properties and applications. Worldwide research has recently developed a wide number of methods suitable for the preparation of polymeric materials of nanometric dimensions, in view of the fact that, at the nanoscale level, new and unexpected properties emerge and lead to innovative applications. In this framework, we have exploited an easy method for the generation of nanostructures, regardless of the chemical structure or the pristine amorphous polymers, that is, biopolymers (e.g., polysaccharides) and synthetic, functional, and structural polymers (i.e, polystyrene, polymethylmethacrylates, polyacetylenes, and polymetallaynes). The nanostructure of these macromolecules, considered as the prototypes of various classes of polymeric materials, was achieved by using a simple and versatile procedure based on an osmotic method (OBM). Depending on the choice of solventonsolvent pairs, the dialysis membrane molecular weight cutoff (MWCO), temperature, and polymer concentration, different morphologies can be obtained (e.g., spheres, sponges, disks, and fibers); also, a tuning of the nanoparticle dimensions ranging from the micro- to nanoscale has been obtained.
机译:衍生自具有多种功能的单体的聚合物为材料提供了广泛的性能和应用范围。鉴于在纳米级出现了新的和出乎意料的性质并导致了创新的应用,全球研究最近开发了许多适合于制备纳米级聚合物材料的方法。在此框架中,我们开发了一种简单的方法来生成纳米结构,而无论其化学结构或原始的无定形聚合物,即生物聚合物(例如多糖)以及合成,功能和结构聚合物(即聚苯乙烯,聚甲基丙烯酸甲酯) ,聚乙炔和聚金属戊烯)。这些大分子的纳米结构被认为是各种聚合材料的原型,是通过使用基于渗透法(OBM)的简单通用的程序来实现的。取决于溶剂/非溶剂对的选择,透析膜的分子量截留值(MWCO),温度和聚合物浓度,可以获得不同的形态(例如,球体,海绵,圆盘和纤维)。同样,已经获得了从微米级到纳米级的纳米颗粒尺寸的调节。

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