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通过季铵化修饰调节纤维素的表面电荷和反应性,实现无盐活性染料染色工艺。

Regulating the surface charge and reactivity of cellulose through quaternized modification to achieve salt-free reactive dyeing process.

机构信息

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

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

出版信息

Int J Biol Macromol. 2024 Nov;281(Pt 1):135898. doi: 10.1016/j.ijbiomac.2024.135898. Epub 2024 Sep 28.

DOI:10.1016/j.ijbiomac.2024.135898
PMID:39343254
Abstract

Limited research exists on how the structure of quaternary ammonium salt (QAS) affects the electrostatic attraction and hydroxyl reactivity of cationic cotton, which strongly affects reactive dye adsorption, diffusion, and fixation. Thus, in our work, the effects of QAS structure on the electrostatic attraction, hydroxyl reactivity, and dyeing properties were investigated. The intensity at 402.5 eV (-N(CH)) in the XPS rose from 34 % to 70 % as the QAS alkyl chain length increased from 4 to 18 carbon atoms, signifying an enhancement of the positive charge and electrostatic attraction between reactive dye and QAS modified cotton. However, molecular dynamic (MD) simulations of the QAS-modified cotton with octadecyl chains revealed that the reactive dye demonstrated slower molecular mobility compared to the untreated cotton. This is not conducive to the diffusion and fixation of reactive dyes. The QAS-modified cotton with hexyl chains not only alters the activity of hydroxyl at the 6th but also generates additional hydroxyl at the β-position that contributes to enhancing the improvement of fixation through Gaussian simulations. Therefore, cationic cotton treated with 60 g/L of (3-chloro-2-hydroxypropyl)-dimethyl-octadecylazanium chloride (CT-8) exhibits superior dye uptake levels (91.84 %), K/S values (13.10), and dye fixation percent (88.38 %).

摘要

关于季铵盐 (QAS) 的结构如何影响阳离子棉的静电吸引和羟基反应性的研究有限,而这强烈影响着活性染料的吸附、扩散和固着。因此,在我们的工作中,研究了 QAS 结构对静电吸引、羟基反应性和染色性能的影响。XPS 中 402.5 eV 处的强度(-N(CH)) 从 34%增加到 70%,随着 QAS 烷基链长度从 4 个碳原子增加到 18 个碳原子,表明活性染料和 QAS 改性棉之间的正电荷和静电吸引力增强。然而,十八烷基链 QAS 改性棉的分子动力学 (MD) 模拟表明,与未处理的棉相比,活性染料的分子迁移率较慢。这不利于活性染料的扩散和固着。具有己基链的 QAS 改性棉不仅改变了第 6 位的羟基活性,而且在β位生成额外的羟基,有助于通过高斯模拟提高固着率。因此,用 60 g/L 的(3-氯-2-羟丙基)-二甲基十八烷基氯化铵(CT-8)处理的阳离子棉表现出较高的染料吸收率(91.84%)、K/S 值(13.10)和染料固着率(88.38%)。

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