大气等离子体对再生尼龙6,6的表面处理

M. Rodríguez, E. Vázquez‐Vélez, H. Martinez, A. Torres
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引用次数: 1

摘要

收稿日期:2020年9月18日收稿日期:2021年1月30日发布在线日期:2021年2月10日聚合物目前代表了具有成本效益的材料,而其可回收性在环境保护方面具有重要意义。然而,聚合物的表面特性往往不能满足润湿性、附着力和摩擦性等方面的要求。常压等离子体处理提高了聚合物表面的物理化学性能。本文采用自旋涂层技术制备了一种再生尼龙涂层,并用傅里叶变换红外光谱和x射线衍射对其进行了表征。采用大气等离子体对涂层进行处理,利用拉曼光谱分析等离子体处理后涂层表面不同官能团的相关信号。用扫描电镜观察等离子体对表面形貌的影响。接触角结果表明,表面润湿性得到改善。
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Superficial Surface Treatment using Atmospheric Plasma on Recycled Nylon 6,6
Received: September 18, 2020 Accepted: January 30, 2021 Published Online: February 10, 2021 Polymers currently represent materials that are cost-effective, while its recycled nature is significant in terms of environmental protection. However, the surface properties of polymers often do not meet the demands of wettability, adhesion, and friction, among others. Atmospheric plasma treatment on the surface of polymers improves its physical-chemistry properties. In this work, a recycled nylon coating was prepared by the spin coating technique and characterized by Fourier transform infrared spectroscopy and X-ray diffraction. This coating was treated by atmospheric plasma, and Raman spectroscopy was performed to analyze the signals related to different functional groups present in the coating surface after plasma treatment. The action of plasma on the surface morphology was observed by scanning electron microscopy. The contact angle results showed an improvement in surface wettability.
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