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调控季铵盐的烷基链长度以提高活性染料喷墨印花用阳离子棉织物的喷墨打印性能。

Regulating the Alkyl Chain Length of Quaternary Ammonium Salt to Enhance the Inkjet Printing Performance on Cationic Cotton Fabric with Reactive Dye Ink.

机构信息

Engineering Research Center for Eco-Dyeing and Finishing of Textiles, Zhejiang Sci-Tech University, Hangzhou 310018, Zhejiang, China.

Institute of Textile and Garment Industry, Zhongyuan University of Technology, Zhengzhou 451191, China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 19;15(15):19750-19760. doi: 10.1021/acsami.3c02304. Epub 2023 Apr 5.

Abstract

Cationic modification of cotton fabric was an effective way to improve the inkjet printing performance with reactive dye ink. However, there were few research studies that focused on the effect of the cationic agent structure, especially the alkyl chain length of the quaternary ammonium salt (QAS) cationic modifier, on the K/S value, dye fixation, and diffusion of inkjet-printed cotton fabric. In our work, different alkyl chain lengths of QAS were synthesized, and the inkjet printing performance of cationic cotton fabrics treated with different QASs was investigated. Compared with untreated cotton fabric, the K/S value and dye fixation of cationic cotton fabric treated with different QASs improved by 10.7 to 69.3% and 16.9 to 27.7%, respectively. With the increase in alkyl chain length of QAS, the interaction force between anionic reactive dyes and cationic QAS gradually increased mainly due to the fact that more N-positive ions on the quaternary ammonium group were exposed under the action of steric hindrance of alkyl chain length through the XPS spectrum. The electrostatic attraction between cationic cotton and reactive dye contributed to the diffusion of reactive dye into the fiber interior and enhanced the reaction probability of nucleophilic substitution reaction between monochlorotriazine reactive dye and the hydroxyl group of cotton fabric. The antibacterial result of the inkjet-printed cotton fabric indicated that when the alkyl chain length of QAS was higher than 8, the cationic cotton fabric obtained good antibacterial property.

摘要

棉织物的阳离子改性是提高反应性染料喷墨印花性能的有效方法。然而,很少有研究关注阳离子剂结构(特别是季铵盐(QAS)阳离子改性剂的烷基链长度)对喷墨印花棉织物的 K/S 值、染料固着和扩散的影响。在我们的工作中,合成了不同烷基链长度的 QAS,并研究了不同 QAS 处理的阳离子棉织物的喷墨打印性能。与未处理的棉织物相比,用不同 QAS 处理的阳离子棉织物的 K/S 值和染料固着率分别提高了 10.7%至 69.3%和 16.9%至 27.7%。随着 QAS 烷基链长度的增加,阴离子反应性染料与阳离子 QAS 之间的相互作用力逐渐增强,这主要是由于在烷基链长度的空间位阻作用下,季铵基团上的更多 N+正离子暴露出来。阳离子棉与反应性染料之间的静电吸引有助于反应性染料向纤维内部扩散,并增强了一氯均三嗪反应性染料与棉织物羟基之间的亲核取代反应的反应概率。喷墨印花棉织物的抗菌结果表明,当 QAS 的烷基链长度高于 8 时,所得到的阳离子棉织物具有良好的抗菌性能。

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