Kert Mateja, Skoko Jasna
Department of Textiles, Graphic Arts and Design, Faculty of Natural Sciences and Engineering, University of Ljubljana, 1000 Ljubljana, Slovenia.
Polymers (Basel). 2023 Apr 3;15(7):1783. doi: 10.3390/polym15071783.
The interest in pH-sensitive textile sensors is growing in the global market. Due to their low-cost production, mechanical stability, flexibility, air-permeability, washability, and reusability, they are more suitable than electronic sensor systems. The research tailored the pH-sensitive textile by applying the pH indicator methyl orange to the cotton fabric during conventional dyeing. Adsorption of methyl orange dye to cotton fabric is hindered due to electrostatic repulsive forces between dye anions and negatively charged cotton fibre. To overcome this problem, chemical modification of cotton fabric using a commercial product was performed. The pH sensitivity of the dyed fabric was spectrophotometrically evaluated. In addition, the colour fastness of dyed cotton fabric to washing, light, hot pressing and rubbing was investigated according to valid SIST EN ISO standards. The research results show that the pH-responsive cotton fabric was successfully developed. The chemical modification of cotton fabric is crucial for the increased adsorption of methyl orange dye. The halochromic effect was not only perceived spectrophotometrically but also with the naked eye. The developed halochromic cotton fabric showed poor colour fastness to light and good colour fastness to hot pressing and rubbing, while no significant improvement in colour fastness to washing was observed, even though the fabric was after-treated with a cationic fixing agent. Higher adsorption of the methyl orange dye to the cotton fabric during the dyeing process leads to less wastewater pollution after dyeing with unfixed dye and, thus, a reduction in wastewater treatment costs.
全球市场对pH敏感型纺织传感器的兴趣与日俱增。由于其生产成本低、机械稳定性好、柔韧性佳、透气性强、可洗涤且可重复使用,它们比电子传感器系统更具优势。该研究通过在传统染色过程中将pH指示剂甲基橙应用于棉织物来定制pH敏感型纺织品。由于染料阴离子与带负电荷的棉纤维之间的静电排斥力,甲基橙染料对棉织物的吸附受到阻碍。为克服这一问题,使用一种商业产品对棉织物进行了化学改性。采用分光光度法评估了染色织物的pH敏感性。此外,根据有效的SIST EN ISO标准,研究了染色棉织物在水洗、光照、热压和摩擦方面的色牢度。研究结果表明,成功开发出了pH响应型棉织物。棉织物的化学改性对于提高甲基橙染料的吸附至关重要。不仅通过分光光度法,而且肉眼也能察觉到酸碱指示剂变色效应。所开发的酸碱指示剂变色棉织物对光照的色牢度较差,对热压和摩擦的色牢度良好,尽管织物用阳离子固色剂进行了后处理,但在水洗色牢度方面未观察到显著改善。在染色过程中甲基橙染料对棉织物的较高吸附导致染色后未固着染料产生的废水污染减少,从而降低了废水处理成本。