Zhuo Yan, Wang Kuang, Hou Lin, Liu Jianli, Fan Zhengke, Fu Yizheng, Dong Aixue, Zhu Bo
College of Textile Science and Engineering, Jiangnan University, Wuxi 214122, China.
Shaanxi Yuanfeng Textile Technology Research Co., LTD, 710038, China.
J Colloid Interface Sci. 2025 Jan 15;678(Pt A):732-741. doi: 10.1016/j.jcis.2024.06.149. Epub 2024 Jun 21.
Meta-aramid (PMIA) fabrics are typically problematic to dye owing to their extremely crystalline structure and high compactness. Herein, Dimethyl sulfoxide (DMSO) and electrolyte as hydrogen bond regulators were selected to improve the dyeability of PIMA dyed with cationic dyes. The PMIA shows both high dyeing and mechanical properties as a result of the synergistic effect of DMSO and electrolyte in the system, which destructs hydrogen bonding networks and increase interaction energy density between dye molecules and PMIA, confirmed by a series of characterization and molecular dynamics simulations. In the DMSO/NaCl/PMIA system, while maintaining excellent mechanical (breaking strength and elongation at break of 24.6Mpa and 37.6 %, respectively) and thermal properties, PMIA not only obtained the best dyeability, increasing the Dye uptake from 20 % to 70.62 % and the K/S value from 2.92 to 18.02, but also achieved excellent colour fastness (fastness to dry and wet rubbing, fastness to light, and fastness to washing of 4-5, 3-4, 3-4 and 4-5, respectively). Simulated results and experimental data verified that the DMSO/NaCl system optimally synergizes hydrogen bond regulation for PMIA and achieves the best dyeing effects for cationic dyes, manifesting its great potential in the PMIA wearability area.
间位芳纶(PMIA)织物由于其极高的结晶结构和高致密性,通常难以染色。在此,选择二甲基亚砜(DMSO)和电解质作为氢键调节剂,以提高阳离子染料对PMIA的染色性能。由于体系中DMSO和电解质的协同作用破坏了氢键网络,增加了染料分子与PMIA之间的相互作用能密度,一系列表征和分子动力学模拟证实,PMIA同时具有高染色性能和机械性能。在DMSO/NaCl/PMIA体系中,PMIA不仅保持了优异的机械性能(断裂强度和断裂伸长率分别为24.6MPa和37.6%)和热性能,还获得了最佳的染色性能,染料上染率从20%提高到70.62%,K/S值从2.92提高到18.02,同时还具有优异的色牢度(干摩擦色牢度、湿摩擦色牢度、耐光色牢度和耐洗色牢度分别为4-5级、3-4级、3-4级和4-5级)。模拟结果和实验数据验证了DMSO/NaCl体系对PMIA的氢键调节具有最佳协同作用,对阳离子染料具有最佳染色效果,在PMIA可穿戴领域具有巨大潜力。