Rolińska Karolina, Bakhshi Hadi, Balk Maria, Parzuchowski Paweł, Mazurek-Budzyńska Magdalena
Faculty of Chemistry, Warsaw University of Technology Noakowskiego 3 00-664 Warsaw Poland
Faculty of Chemistry, University of Warsaw Pasteura 1 02-093 Warsaw Poland.
RSC Adv. 2024 May 15;14(22):15766-15775. doi: 10.1039/d4ra01726a. eCollection 2024 May 10.
The study investigated the impact of hard segments (HS) content on the morphology and thermomechanical properties of electrospun aliphatic poly(carbonate-urea-urethane)s (PCUUs). The obtained nonwovens exhibited surface porosity ranging from 50% to 57%, and fiber diameters between 0.59 and 0.71 μm. Notably, the PCUUs nonwovens with the highest HS content (18%) displayed superior mechanical properties compared to those with lower HS contents. This study highlights the ability to customize the properties of polymeric nonwovens based on their chemical compositions, offering tailored solutions for specific application needs.
该研究调查了硬段(HS)含量对静电纺丝脂肪族聚(碳酸酯 - 脲 - 聚氨酯)(PCUUs)的形态和热机械性能的影响。所得无纺布的表面孔隙率在50%至57%之间,纤维直径在0.59至0.71μm之间。值得注意的是,与较低HS含量的PCUUs无纺布相比,HS含量最高(18%)的PCUUs无纺布表现出优异的机械性能。这项研究突出了根据聚合物无纺布的化学成分定制其性能的能力,为特定应用需求提供了量身定制的解决方案。