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首页> 外文期刊>Scientific reports. >Covalent immobilization of metal–organic frameworks onto the surface of nylon—a new approach to the functionalization and coloration of textiles
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Covalent immobilization of metal–organic frameworks onto the surface of nylon—a new approach to the functionalization and coloration of textiles

机译:将金属有机骨架共价固定在尼龙表面上—一种纺织品功能化和着色的新方法

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The prevention of refractory organic pollution caused by conventional dyeing and the development of new fabrics with various functions are two issues to be solved urgently in the field of textile fabrication. Here, we report a new environmentally friendly route for the simultaneous coloration and functionalization of textiles by the covalent immobilization of a metal-organic framework, Cr-based MIL-101(Cr), onto the surfaces of nylon fabrics by co-graft polymerization with 2-hydroxyethyl acrylate initiated by γ-ray irradiation. The Cr(III) clusters color the nylon fabric, and the color intensity varies with the MIL-101 content, providing a "green" textile coloration method that is different from conventional dyeing processes. An X-ray diffraction (XRD) analysis shows that the nanoporous structure of the original MIL-101 particles is retained during radiation-induced graft polymerization. Numerous nanopores are introduced onto the surface of the nylon fabric, which demonstrated better sustained-release-of-aroma performance versus pristine nylon fabric in tests. The modified fabrics exhibit laundering durability, with MIL-101 nanoparticles intact on the nylon surface after 30 h of dry cleaning.
机译:防止常规染色引起的难处理的有机污染以及开发具有多种功能的新型织物是纺织品制造领域亟待解决的两个问题。在这里,我们报告了一种新的环保途径,该途径是通过将金属-有机骨架铬基MIL-101(Cr)通过共接枝聚合与尼龙织物表面共价共价固定在纺织品上同时着色和功能化的γ-射线照射引发的丙烯酸2-羟乙酯。 Cr(III)团簇使尼龙织物着色,并且颜色强度随MIL-101含量而变化,从而提供了一种不同于传统染色工艺的“绿色”纺织品着色方法。 X射线衍射(XRD)分析表明,在辐射诱导的接枝聚合过程中,原始MIL-101颗粒的纳米孔结构得以保留。在尼龙织物的表面上引入了许多纳米孔,与原始尼龙织物相比,纳米孔具有更好的香气持续释放性能。改性织物表现出洗涤耐久性,在干洗30小时后,尼龙表面上的MIL-101纳米颗粒完好无损。

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