文章摘要
王筱宁,杨雨凡,曹雨晴,詹红钰,杨国超,蔡静蕊.氟化PVA-SiO2薄膜单面疏水性的研究与表征[J].包装工程,2019,40(19):164-171.
WANG Xiao-ning,YANG Yu-fan,CAO Yu-qing,ZHAN Hong-yu,YANG Guo-chao,CAI Jing-rui.Research and Characterization of Single-sided Hydrophobicity of Fluorinated PVA-SiO2 Films[J].Packaging Engineering,2019,40(19):164-171.
氟化PVA-SiO2薄膜单面疏水性的研究与表征
Research and Characterization of Single-sided Hydrophobicity of Fluorinated PVA-SiO2 Films
投稿时间:2019-04-22  修订日期:2019-10-10
DOI:10.19554/j.cnki.1001-3563.2019.19.024
中文关键词: 聚乙烯醇  单面疏水  接触角  十七氟癸基三甲氧基硅烷
英文关键词: PVA  single-sided hydrophobicity  contact angle  heptafluorodecyl trimethoxysilane
基金项目:
作者单位
王筱宁 北京林业大学 材料科学与技术学院北京 100083 
杨雨凡 北京林业大学 材料科学与技术学院北京 100083 
曹雨晴 北京林业大学 材料科学与技术学院北京 100083 
詹红钰 北京林业大学 材料科学与技术学院北京 100083 
杨国超 北京林业大学 材料科学与技术学院北京 100083 
蔡静蕊 北京林业大学 材料科学与技术学院北京 100083 
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中文摘要:
      目的 研究开发一种具有单面疏水性能的聚乙烯醇薄膜材料作为包装材料。方法 将质量分数为12%、醇解度为88%的PVA溶液与质量分数为5%的纳米SiO2溶液按体积比为1∶1混合并加热搅拌,通过流延干燥的方式制备PVA-SiO2薄膜。然后分别用体积分数为2.5%,5%,7.5%的十七氟癸基三甲氧基硅烷(FAS)-乙醇溶液以浸泡方式修饰薄膜的其中一面,并通过溶解性测试、接触角测试、场发射扫描电子显微镜(FE-SEM)、傅里叶变换衰减全反射红外光谱测试(ATR-FTIR)等方法表征改性结果。结果 结果表明薄膜单面疏水性得到改善,改性后的薄膜在水中的溶解时间增加,且接触角均在120°以上,表明FAS起到了降低表面能的作用;FE-SEM结果显示,Si元素含量对薄膜的疏水性能有着重要影响;ATR-FTIR显示,FAS改性成功将氟原子引入到薄膜表面,且增加了硅原子的数量。其中用质量分数为5%的FAS-乙醇溶液修饰后的薄膜疏水性最好,接触角达到了126.21°。结论 与未改性薄膜相比,经FAS单面疏水改性的PVA-SiO2薄膜疏水性能得到大大提高,拓宽了PVA薄膜材料的应用领域。
英文摘要:
      The work aims to study and develop a kind of polyvinyl alcohol (PVA) film material with single-sided hy-drophobic property as packaging material. PVA-SiO2 films were prepared by tape-casting drying with 12% (mass fraction) PVA solution with 88% alcoholysis degree and 5% (mass fraction) nano-SiO2 solution heated and stirred at 1:1 volume ratio. Then, one side of the film was modified by 2.5%, 5% and 7.5% heptafluorodecyl trimethoxysilane (FAS)-ethanol solution, and the modified results were characterized by solubility test, contact angle test, field emission scanning electron microscopy (FE-SEM) and Fourier transform attenuated total reflection infrared spectroscopy (ATR-FTIR). The results indicated that, the one-sided hydrophobicity of the films was improved. The dissolution time of modified film in water increased and the contact angles of all kinds of modified films were above 120°, which meant that FAS did play a role in lowering the surface energy. FE-SEM results showed that, the content of Si element had an important influence on the hydrophobicity of the films. ATR-FTIR showed that, fluorine atoms were successfully introduced into the film surface after FAS modification, and the number of silicon atoms was increased. The hydrophobicity of the film modified by 5% (mass fraction) FAS-ethanol solution was the best, and the contact angle reached 126.21°. The hydrophobic properties of PVA-SiO2 films after single-sided modification by FAS are much better than those of unmodified ones, which widen the application field of PVA film materials.
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