Tang Qianqian, Chen Qing, Zhou Mingsong, Yang Dongjie
College of Chemistry and Chemical Engineering, Henan Key Laboratory of Function-Oriented Porous Materials, Luoyang Normal University, 6 Jiqing Road, Yibin District, Luoyang 471934, People's Republic of China.
School of Chemistry and Chemical Engineering, State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, 381 Wushan Road, Tianhe District, Guangzhou, 510640, People's Republic of China.
Int J Biol Macromol. 2022 Dec 1;222(Pt B):2523-2534. doi: 10.1016/j.ijbiomac.2022.10.036. Epub 2022 Oct 13.
The long-term stability of nano disperse dye slurry is a problem in industry. In this work, high molecular-weight polyether amine-bridged lignosulfonates (PEABLs) were prepared to improve the adsorption strength of dispersants on dye surfaces, and thus the stability of nano disperse dyes. Specifically, the molecular simulation software was firstly used to analyze the adsorption of PEABL on dye surfaces. Then, PEABLs with different molecular weights were synthesized and characterized by adjusting the addition of polyether amine. Next, nano disperse dyes were prepared using PEABLs and the optimum grinding conditions were explored and obtained. Finally, PEABL3 was determined to the optimum dispersant, having a smallest particle size (168 nm) and highest stability, comparable to the commercial Reax 85A dispersant and basically satisfying the demand of nano disperse dyes required in digital transfer printing technology. Quartz crystal microbalance (QCM), atomic force microscopy (AFM) and zeta potential results showed as the molecular weight of PEABL increased, the adsorption amount, adsorbed layer rigidity, adsorption force and absolute zeta potential value all firstly increased due to the enhanced hydrophobic interaction, and then decreased due to the formation of complicated three-dimensional network structures caused by the crosslink of lignosulfonate molecules. A maximum was observed for PEABL3.
纳米分散染料浆料的长期稳定性是工业生产中的一个问题。在本研究中,制备了高分子量聚醚胺桥连木质素磺酸盐(PEABLs),以提高分散剂在染料表面的吸附强度,从而提高纳米分散染料的稳定性。具体而言,首先使用分子模拟软件分析PEABL在染料表面的吸附情况。然后,通过调整聚醚胺的添加量合成并表征了不同分子量的PEABLs。接下来,使用PEABLs制备纳米分散染料,并探索并获得了最佳研磨条件。最后,确定PEABL3为最佳分散剂,其粒径最小(168nm)且稳定性最高,与市售Reax 85A分散剂相当,基本满足数字转移印花技术中纳米分散染料的要求。石英晶体微天平(QCM)、原子力显微镜(AFM)和zeta电位结果表明,随着PEABL分子量的增加,由于疏水相互作用增强,吸附量、吸附层刚性、吸附力和绝对zeta电位值均先增加,然后由于木质素磺酸盐分子交联形成复杂的三维网络结构而降低。PEABL3出现最大值。