T. Pušić, T. Kaurin, Marko Liplin, A. Budimir, M. Čurlin, K. Grgić, Ana Sutlović, J. Volmajer Valh
{"title":"The Stability of the Chitosan Coating on Polyester Fabric in the Washing Process","authors":"T. Pušić, T. Kaurin, Marko Liplin, A. Budimir, M. Čurlin, K. Grgić, Ana Sutlović, J. Volmajer Valh","doi":"10.14502/tekstilec.66.2023010","DOIUrl":null,"url":null,"abstract":"The sensitivity of chitosan to environmental conditions and processing conditions can stress its structure and cause degradation of this polymer on various application carriers. The stability of chitosan in a designed textile structure of standard polyester fabric with chitosan was analysed in a multiple washing process with a standard detergent by studying the properties before and after 10 washing cycles. The chitosan was coated on standard and alkali treated polyester fabrics. Washing was performed with an ECE A reference detergent at 60 °C according to the Standard protocol HRN EN ISO 6330 in 10 cycles. The washing stability of chitosan onto polyester fabrics was monitored by a staining test, zeta potential, breaking force, breaking elongation, pilling propensity, touch, whiteness, moisture transport, antimicrobial activity and morphological features. The staining test confirmed the wash stability of chitosan coated on alkali hydrolised polyester fabrics, while the chitosan coated on standard polyester fabric disappeared. Zeta potential proved to be the significant parameter for determining chitosan` stability. The tensile properties of fabric samples were harmonised with other characterisation parameters. Coating of polyester fabric with chitosan increased the elasticity of all samples. The antimicrobial activity of polyester fabrics coated with chitosan against Staphylococcus aureus was reduced by 20% after 10 washing cycles. All the characterisation parameters proved that polyester fabric as a chitosan carrier should be surface modified for designing a stable bioactive textile structure of chitosan and polyester.","PeriodicalId":22555,"journal":{"name":"TEKSTILEC","volume":" ","pages":""},"PeriodicalIF":0.7000,"publicationDate":"2023-06-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"TEKSTILEC","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14502/tekstilec.66.2023010","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"MATERIALS SCIENCE, TEXTILES","Score":null,"Total":0}
引用次数: 1
Abstract
The sensitivity of chitosan to environmental conditions and processing conditions can stress its structure and cause degradation of this polymer on various application carriers. The stability of chitosan in a designed textile structure of standard polyester fabric with chitosan was analysed in a multiple washing process with a standard detergent by studying the properties before and after 10 washing cycles. The chitosan was coated on standard and alkali treated polyester fabrics. Washing was performed with an ECE A reference detergent at 60 °C according to the Standard protocol HRN EN ISO 6330 in 10 cycles. The washing stability of chitosan onto polyester fabrics was monitored by a staining test, zeta potential, breaking force, breaking elongation, pilling propensity, touch, whiteness, moisture transport, antimicrobial activity and morphological features. The staining test confirmed the wash stability of chitosan coated on alkali hydrolised polyester fabrics, while the chitosan coated on standard polyester fabric disappeared. Zeta potential proved to be the significant parameter for determining chitosan` stability. The tensile properties of fabric samples were harmonised with other characterisation parameters. Coating of polyester fabric with chitosan increased the elasticity of all samples. The antimicrobial activity of polyester fabrics coated with chitosan against Staphylococcus aureus was reduced by 20% after 10 washing cycles. All the characterisation parameters proved that polyester fabric as a chitosan carrier should be surface modified for designing a stable bioactive textile structure of chitosan and polyester.
壳聚糖对环境条件和加工条件的敏感性会影响其结构,并导致其在各种应用载体上的降解。通过研究10次洗涤前后的性能,用标准洗涤剂多次洗涤,分析了壳聚糖在设计的标准涤纶织物结构中的稳定性。将壳聚糖涂覆在标准和碱处理的涤纶织物上。根据标准方案HRN EN ISO 6330,用ECE A参考洗涤剂在60°C下进行10次洗涤。通过染色试验、zeta电位、断裂力、断裂伸长率、起球倾向、触感、白度、水分输送、抗菌活性和形态等指标监测壳聚糖在涤纶织物上的洗涤稳定性。染色试验证实了涂覆在碱水解聚酯织物上的壳聚糖的洗涤稳定性,而涂覆在标准聚酯织物上的壳聚糖则消失。Zeta电位是决定壳聚糖稳定性的重要参数。织物样品的拉伸性能与其他表征参数一致。用壳聚糖对涤纶织物进行涂层处理,提高了所有样品的弹性。经壳聚糖涂层处理的涤纶织物经过10次洗涤后,对金黄色葡萄球菌的抗菌活性降低了20%。所有的表征参数都表明,作为壳聚糖载体的聚酯织物需要进行表面改性,以设计稳定的壳聚糖和聚酯生物活性织物结构。