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壳聚糖-纳米金属氧化物杂化物负载到棉/聚酯纤维上以赋予持久有效的多功能性。

Loading of chitosan - Nano metal oxide hybrids onto cotton/polyester fabrics to impart permanent and effective multifunctions.

机构信息

Textile Research Division, National Research Centre, Scopus Afflitiation ID 60014618, (El-Behouth St.), Dokki, Giza, Egypt.

Textile Research Division, National Research Centre, Scopus Afflitiation ID 60014618, (El-Behouth St.), Dokki, Giza, Egypt.

出版信息

Int J Biol Macromol. 2017 Dec;105(Pt 1):769-776. doi: 10.1016/j.ijbiomac.2017.07.099. Epub 2017 Jul 22.

Abstract

New and durable multifunctional properties of cotton/polyester blended fabrics were developed through loading of chitosan (Cs) and various metal oxide nanoparticles (MONPs) namely ZnO, TiO, and SiO onto fabric surface using citric acid/Sodium hypophosphite for ester-crosslinking and creating new anchoring and binding sites, COOH groups, onto the ester-crosslinked fabrics surface. The surface morphology and the presence of active ingredients (Cs & MONPs) onto selected - coated fabric samples were analyzed by SEM images and confirmed by EDS spectrums. The influence of various finishing formulations on some performance and functional properties such as wettability, antibacterial activity, UV-protection, self-cleaning, resiliency and durability to wash were studied. The obtained results revealed that the extent of improvement in the imparted functional properties is governed by type of loaded-hybrid and follows the decreasing order: Cs-TiONPs>Cs-ZnONPs>SiONP>Cs alone, as well as kind of substrate cotton/polyester (65/35)>cotton/polyester (50/50). Moreover, after 15 washing cycles, the durability of the imparted functional properties of Cs/TiONP - loaded substrates marginally decreased indicating the strong fixation of the hybrid components onto the ester-crosslinked substrates. The obtained bioactive multifunctional textiles can be used for producing eco-friendly protective textile materials for numerous applications.

摘要

通过在纤维表面负载壳聚糖(Cs)和各种金属氧化物纳米粒子(MONPs),如 ZnO、TiO 和 SiO,并用柠檬酸/次磷酸钠进行酯交联,在酯交联纤维表面创造新的锚固和结合位点(COOH 基团),开发出具有新的耐用多功能性能的棉/涤混纺织物。通过 SEM 图像分析和 EDS 能谱图对选定的涂层织物样品进行表面形态和活性成分(Cs 和 MONPs)的存在分析。研究了不同整理配方对一些性能和功能特性的影响,如润湿性、抗菌活性、紫外线防护、自清洁、弹性和耐洗性。结果表明,赋予的功能特性的改善程度取决于负载的混合体的类型,并遵循以下顺序递减:Cs-TiONPs>Cs-ZnONPs>SiONP>Cs 单独,以及棉/涤(65/35)>棉/涤(50/50)的种类。此外,经过 15 次洗涤循环后,Cs/TiONP 负载基底赋予的功能特性的耐久性略有下降,表明混合成分已被牢固地固定在酯交联基底上。所得的生物活性多功能纺织品可用于生产用于各种应用的环保防护纺织材料。

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