Jeong Jieun, Kim Soochan, Yun Sangsoo, Yang Xin, Kim Young Jun
School of Chemical Engineering, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Department of Engineering, University of Cambridge, Cambridge CB3 0FS, UK.
Polymers (Basel). 2023 Jul 21;15(14):3113. doi: 10.3390/polym15143113.
Polyethersulfone (PES) has outstanding thermal and dimensional stability. It is considered an engineering thermoplastic. However, its high coefficient of thermal expansion (CTE) hinders its use in automobiles, microelectronics, and flexible display areas. To overcome its high coefficient of thermal expansion (CTE), recent studies have focused on reducing its high CTE and improving its mechanical properties by adding nano-sized fillers or materials. The addition of nanofiller or nanofibrils to the PES matrix often has a positive effect on its mechanical and thermal properties, making it a flexible display substrate. To obtain ideal flexible substrates, we prepared polyethersulfone with lignin nanocomposite films to reduce CTE and improve the mechanical and thermal properties of PES by varying the relative ratio of PES in the lignin nanocomposite. In this study, lignin as a biodegradable nanofiller was found to show high thermal, oxidative, and hydrolytic stability with favorable mechanical properties. PES/lignin nanocomposite films were prepared by solution casting according to the content of lignin (0 to 5 wt.%). PES/lignin composite films were subjected to mechanical, thermo-mechanical, optical, and surface analyses. The results showed enhanced thermomechanical and optical properties of PES, with the potential benefits of lignin filler materials realized for the development of thermoplastic polymer blends.
聚醚砜(PES)具有出色的热稳定性和尺寸稳定性。它被视为一种工程热塑性塑料。然而,其高热膨胀系数(CTE)阻碍了它在汽车、微电子和柔性显示领域的应用。为了克服其高热膨胀系数(CTE),最近的研究集中在通过添加纳米尺寸的填料或材料来降低其高CTE并改善其机械性能。向PES基体中添加纳米填料或纳米纤维通常对其机械和热性能有积极影响,使其成为一种柔性显示基板。为了获得理想的柔性基板,我们制备了具有木质素纳米复合薄膜的聚醚砜,通过改变木质素纳米复合材料中PES的相对比例来降低CTE并改善PES的机械和热性能。在本研究中,发现木质素作为一种可生物降解的纳米填料具有高热稳定性、氧化稳定性和水解稳定性以及良好的机械性能。根据木质素含量(0至5 wt.%)通过溶液浇铸制备了PES/木质素纳米复合薄膜。对PES/木质素复合薄膜进行了机械、热机械、光学和表面分析。结果表明,PES的热机械性能和光学性能得到了增强,木质素填充材料在热塑性聚合物共混物的开发中实现了潜在益处。