纤维工程在生态疏水设计和多功能应用织物创新方面的进展

Wei Li, Libing Yang, Jianying Huang, Chan Zheng, Yu Chen, Yunbo Li, Dapeng Yang, Shuhui Li, Zhong Chen, Weilong Cai and Yuekun Lai
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引用次数: 0

摘要

由于含氟涂层能够赋予织物特殊的疏水特性,从而缓解与高吸湿性和易污染性相关的问题,因此在过去几年中,含氟涂层在纺织品上的应用引起了大量研究兴趣。然而,由于担心含氟物质对生态环境的影响和对人体的潜在毒性,含氟物质一直被禁止使用。因此,对由非含氟天然材料制成的、可持续发展且对环境无害的疏水性纺织品替代品的需求急剧增长。本文全面概述了在开发和功能化环保型疏水性纺织品方面取得的进展。首先,介绍了用于制造超疏水纺织品的天然材料及其衍生物,包括纤维素、木质素、壳聚糖等。随后,阐明了制作高效、稳定和弹性疏水性纺织品的方法,包括传统技术和新颖、创造性的概念。此外,还探讨了基于超疏水性织物的多功能纺织品的研究现状和发展过程中面临的障碍。总之,本讨论对功能性纺织品即将出现的发展方向提出了精辟的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Progress on fiber engineering for fabric innovation in ecological hydrophobic design and multifunctional applications

Progress on fiber engineering for fabric innovation in ecological hydrophobic design and multifunctional applications

The application of fluorinated coatings on textiles has garnered substantial research interest over the past years, owing to their ability to endow fabrics with exceptional hydrophobic characteristics, thereby mitigating issues associated with high moisture absorption and susceptibility to contamination. Nevertheless, the deployment of fluorinated substances has been proscribed due to concerns regarding their ecological impact and potential human toxicity. Consequently, there has been a burgeoning demand for hydrophobic textile alternatives derived from non-fluorinated, natural materials that are both sustainable and environmentally benign. This paper presents a thorough overview of the advancements in the development and functionalization of eco-friendly, hydrophobic textiles. Initially, the natural materials and their derivatives utilized in the creation of superhydrophobic textiles are delineated, including cellulose, lignin and chitosan, among others. Subsequently, methodologies for crafting efficient, stable, and resilient hydrophobic textiles are elucidated, encompassing conventional techniques as well as novel, inventive concepts. Furthermore, the current state of research and the obstacles faced in the evolution of multifunctional textiles based on superhydrophobic fabrics are examined. In conclusion, this discussion presents incisive insights into the impending direction of advancements in functional textiles.

Keywords: Eco-friendly; Superhydrophobic; Bioinspired; Multifunctional textiles; Natural materials.

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来源期刊
Industrial Chemistry & Materials
Industrial Chemistry & Materials chemistry, chemical engineering, functional materials, energy, etc.-
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期刊介绍: Industrial Chemistry & Materials (ICM) publishes significant innovative research and major technological breakthroughs in all aspects of industrial chemistry and materials, with a particular focus on the important innovation of low-carbon chemical industry, energy and functional materials. By bringing researchers, engineers, and policymakers into one place, research is inspired, challenges are solved and the applications of science and technology are accelerated. The global editorial and advisory board members are valued experts in the community. With their support, the rigorous editorial practices and dissemination ensures your research is accessible and discoverable on a global scale. Industrial Chemistry & Materials publishes: ● Communications ● Full papers ● Minireviews ● Reviews ● Perspectives ● Comments
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