用于纺织品应用的丝胶蛋白/纳米二氧化钛复合材料的改性和性能研究

C. Zhu, Yanping Lin, Xiangai Zhang, Chen Yang
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引用次数: 0

摘要

丝胶蛋白是一种天然的高分子量化合物,含有十八种氨基酸。它无毒、可生物降解、生物相容性好,制备方法简单,成本低廉。它广泛应用于功能性服装、医疗和制药领域、组织工程等。纳米二氧化钛则具有无毒、自洁、抗菌和除臭的特性。为了开发具有除臭、防紫外线、良好的热性能和机械性能的多功能纺织品,本研究采用了一种复合方法,使用丝胶蛋白和纳米二氧化钛的混合整理溶液,通过两次浸渍和两次添加工艺,对柠檬酸预处理的棉织物进行改性。织物整理前后的微观结构观察以及除臭、防紫外线和热性能评估结果表明,控制丝胶蛋白/纳米二氧化钛混合整理液的比例可使改性棉织物表面光滑。这种改性不仅提高了织物的防紫外线性能和抗拉强度,还改善了其热性能,同时赋予其一定的除臭能力。综合分析认为,利用丝胶蛋白和纳米二氧化钛对棉织物进行改性,制备出具有除臭、防紫外线、良好的热性能和机械性能的多功能纺织品是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Modification and Properties of Silk Sericin Protein/Nano-Titanium Dioxide Composite for Textile Applications
Silk sericin protein is a natural high-molecular-weight compound that contains eighteen types of amino acids. It is non-toxic, biodegradable, and biocompatible, with simple preparation methods and low cost. It finds widespread application in functional clothing, medical and pharmaceutical fields, tissue engineering, and more. Nano-titanium dioxide, on the other hand, possesses non-toxic, self-cleaning, antibacterial, and deodorizing properties. To develop multifunctional textiles with deodorization, UV protection, and good thermal and mechanical properties, this study utilized a compounding method to modify citric acid-pre-treated cotton fabrics through a two-dipping and two-padding process using a blend finishing solution of silk sericin protein and nano-titanium dioxide. Observations of the microstructure before and after fabric finishing, along with evaluations of deodorization, UV protection, and thermal properties, revealed that controlling the proportion of the silk sericin protein/nano-titanium dioxide blend finishing solution can result in a smooth surface of the modified cotton fabric. This modification not only enhances the fabric’s UV protection and tensile strength but also improves its thermal properties while imparting certain deodorization capabilities. Comprehensive analysis concludes that using silk sericin protein and nano-titanium dioxide for modifying cotton fabric to prepare multifunctional textiles with deodorization, UV protection, and good thermal and mechanical performance is feasibly viable.
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