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通过表面引发原子转移自由基聚合接枝热响应性聚(乙烯基己内酰胺)后获得的自清洁棉

Self-Cleaning Cotton Obtained after Grafting Thermoresponsive Poly(-vinylcaprolactam) through Surface-Initiated Atom Transfer Radical Polymerization.

作者信息

Gautam Bhaskarchand, Yu Hsiao-Hua

机构信息

Smart Organic Material Laboratory, Institute of Chemistry, Academia Sinica, Nankang, 128 Academia Road, Sec. 2, Taipei 115, Taiwan.

Academia Sinica, Taipei 115, Taiwan.

出版信息

Polymers (Basel). 2020 Dec 5;12(12):2920. doi: 10.3390/polym12122920.

Abstract

Although the performance of smart textiles would be enhanced if they could display self-cleaning ability toward various kinds of contamination, the procedures that have been used previously to impart the self-cleaning potential to these functional fabrics (solvent casting, dip coating, spin coating, surface crosslinking) have typically been expensive and/or limited by uncontrollable polymer thicknesses and morphologies. In this paper, we demonstrate the use of atomic transfer radical polymerization for the surface-initiated grafting of poly(-vinylcaprolactam), a thermoresponsive polymer, onto cotton. We confirmed the thermoresponsiveness and reusability of the resulting fabric through water contact angle measurements and various surface characterization techniques (scanning electron microscopy, atomic force microscopy, Fourier transform infrared spectroscopy). Finally, we validated the self-cleaning performance of the fabric by washing away an immobilized fluorescent protein in deionized water under thermal stimulus. Fluorescence micrographs revealed that, after the fifth wash cycle, the fabric surface had undergone efficient self-cleaning of the stain, making it an effective self-cleaning material. This approach appears to have potential for application in the fields of smart textiles, responsive substrates, and functional fabrics.

摘要

尽管智能纺织品若能对各种污染物展现出自清洁能力,其性能将会得到提升,但此前用于赋予这些功能性织物自清洁潜能的方法(溶剂浇铸、浸涂、旋涂、表面交联)通常成本高昂,且/或受聚合物厚度和形态难以控制的限制。在本文中,我们展示了利用原子转移自由基聚合反应将一种热响应性聚合物聚(乙烯基己内酰胺)表面引发接枝到棉织物上。我们通过水接触角测量以及各种表面表征技术(扫描电子显微镜、原子力显微镜、傅里叶变换红外光谱)证实了所得织物的热响应性和可重复使用性。最后,我们通过在热刺激下用去离子水冲洗掉固定在织物上的荧光蛋白,验证了该织物的自清洁性能。荧光显微照片显示,在第五次洗涤循环后,织物表面的污渍已得到有效自清洁,使其成为一种有效的自清洁材料。这种方法在智能纺织品、响应性基材和功能性织物领域似乎具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dcb/7762131/9b3d950561cc/polymers-12-02920-g001.jpg

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