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Various nanoparticle morphologies and surface properties of waterborne polyurethanecontrolled by water

机译:水性聚氨酯的各种纳米颗粒形态和表面性质由水控制

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摘要

Water plays important roles in organic reactions such as polyurethane synthesis, and the aqueous solution environment affects polymer morphology and other properties. This paper focuses on the morphology and surface properties of waterborne polyurethane resulting from the organic reaction in water involving different forms (solid and liquid), temperatures and aqueous solutions. We provide evidence from TEM observations that the appearance of polyurethane nanoparticles in aqueous solutions presents diverse forms, including imperfect spheres, perfect spheres, perfect and homogenous spheres and tubes. Based on the results on FTIR, GPC, AFM and XRD experiments, we suggest that the shape of the nanoparticles may be decided by the crimp degree (i.e., the degree of polyurethane chains intertangling in the water environment) and order degree, which are determined by the molecular weight (Mn) and hydrogen bonds. Meanwhile, solid water and high-temperature water can both reduce hard segments that gather on the polyurethane film surface to reduce hydrophilic groups and produce a soft surface. Our findings show that water may play key roles in aqueous polymer formation and bring order to molecular chains.
机译:水在有机反应(例如聚氨酯合成)中起重要作用,水溶液环境会影响聚合物的形态和其他性能。本文重点研究了水性聚氨酯的形貌和表面性质,这种水性聚氨酯是由水中的有机反应引起的,其中涉及不同形式(固体和液体),温度和水溶液。我们从TEM观察中提供的证据表明,水性溶液中聚氨酯纳米粒子的出现呈现多种形式,包括不完美的球体,完美的球体,完美和均质的球体和管子。根据FTIR,GPC,AFM和XRD实验的结果,我们建议纳米颗粒的形状可能取决于卷曲度(即,聚氨酯链在水环境中的缠结度)和有序度通过分子量(Mn)和氢键。同时,固体水和高温水都可以减少聚集在聚氨酯膜表面上的硬链段,从而减少亲水基团并产生柔软的表面。我们的发现表明,水可能在水性聚合物的形成中起关键作用,并使分子链有序。

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