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商业分散剂对D5非水介质染色体系中分散染料染色性能及染料-纤维相互作用的影响

Influences of Commercial Dispersants on the Dyeing Performance and Dye-Fiber Interaction of Disperse Dyes in D5 Nonaqueous Medium Dyeing Systems.

作者信息

Pei Liujun, Zhu Jun, Lu Danni, Gong Siping, Gao Shaokun, Miao Huali, Wang Jiping

机构信息

Shanghai Engineering Research Center for Clean Production of Textile Chemistry, Shanghai University of Engineering Science, Shanghai 201620, PR China.

School of Textiles and Fashion, Shanghai University of Engineering Science, Shanghai 201620, PR China.

出版信息

Langmuir. 2025 Aug 12;41(31):20809-20823. doi: 10.1021/acs.langmuir.5c02373. Epub 2025 Jul 31.

Abstract

In the decamethylcyclopentasiloxane (D5) nonaqueous medium dyeing system, the uptake of dye can be improved by the accelerant. However, traditional dispersants used in disperse dye formulations can lead to the dissolution of disperse dyes in the dye-promoting phase, which negatively influences the uniformity of the dyeing process. This study focuses on three commonly used dispersants found in commercial disperse dyes, studying their effects on the dyeing performance of these dyes in the D5 nonaqueous medium dyeing systems. In the D5 nonaqueous medium dyeing system, the leveling property of the dyed polyester fabric became worse, and more and more spotted occurred on the fabric surface with the amount of dispersant increased from 0.2% to 2.0%. Compared with no accelerant, more disperse dyes would be dispersed in the dyeing accelerant phase under the action of the dispersant when dyes, dispersants, and accelerants were employed in the nonaqueous medium dyeing system. In comparison to the absence of dispersants and dye accelerants, the adsorption rate of the dye on polyester fibers increased by 22%, while the final equilibrium adsorption capacity improved by 30% if accelerants were employed in the dyeing system. However, the simultaneous addition of both dye accelerants and dispersants resulted in a slight decrease in the equilibrium dye uptake of dispersed dyes on polyester. Compared with pure D5 dyeing, the dye accelerant significantly enhances the affinity between disperse dye and polyester fibers. However, when both the dye accelerant and dispersant are added simultaneously, the affinity between the dye and fibers would be decreased. For the composition of the fabric surface stains, the content of dispersant was the most (more than 96%), while the proportion of disperse dyes was only about 1%, and the impurities in disperse dyes were less than 1% when only the dispersant was used during dyeing. However, the content of the dispersant was increased by 3-6 times after adding the dyeing accelerant. These results have demonstrated that the use of a dyeing accelerator during the dyeing process significantly increases the concentration of the dispersant on the fabric surface, leading to the aggregation of certain disperse dyes on the fiber surface. An analysis of the chemical environment on the fabric surface before and after dyeing reveals that the use of a traditional water-soluble dispersant in the dyeing system results in an increased presence of C-C or C-H bonds on the fabric surface. Therefore, the intermolecular forces between polyester fibers, disperse dyes, and dispersants influence the dyeing performance, resulting in dispersants unsuitable for nonaqueous medium dyeing systems.

摘要

在十甲基环五硅氧烷(D5)非水介质染色体系中,促染剂可提高染料的上染率。然而,分散染料配方中使用的传统分散剂会导致分散染料在促染相中溶解,这对染色过程的均匀性产生负面影响。本研究聚焦于商业分散染料中常用的三种分散剂,研究它们在D5非水介质染色体系中对这些染料染色性能的影响。在D5非水介质染色体系中,随着分散剂用量从0.2%增加到2.0%,染色后聚酯织物的匀染性变差,织物表面出现越来越多的色斑。与不使用促染剂相比,在非水介质染色体系中使用染料、分散剂和促染剂时,更多的分散染料会在分散剂作用下分散在染色促染相中。与不使用分散剂和染料促染剂相比,染色体系中使用促染剂时,染料在聚酯纤维上的吸附速率提高了22%,最终平衡吸附量提高了30%。然而,同时添加染料促染剂和分散剂会导致分散染料在聚酯上的平衡上染率略有下降。与纯D5染色相比,染料促染剂显著增强了分散染料与聚酯纤维之间的亲和力。然而,当同时添加染料促染剂和分散剂时,染料与纤维之间的亲和力会降低。对于织物表面色斑的组成,染色时仅使用分散剂时,分散剂含量最高(超过96%),而分散染料的比例仅约为1%,分散染料中的杂质含量低于1%。然而,添加染料促染剂后,分散剂的含量增加了3至6倍。这些结果表明,染色过程中使用染色促进剂会显著提高织物表面分散剂的浓度,导致某些分散染料在纤维表面聚集。对染色前后织物表面化学环境的分析表明,染色体系中使用传统的水溶性分散剂会导致织物表面C-C或C-H键的存在增加。因此,聚酯纤维、分散染料和分散剂之间的分子间作用力影响染色性能,导致分散剂不适用于非水介质染色体系。

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