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    题名: 高分子/二氧化矽混成製備透明及疏水性質之硬質膜;Preparation of polymer/silica hybrid hard coatings with enhanced hydrophobicity and transparent ability
    作者: 賴臆升;Lai,Yi-Sheng
    贡献者: 化學工程與材料工程學系
    关键词: 有機/無機複合塗膜;溶膠-凝膠
    日期: 2015-06-15
    上传时间: 2015-07-30 19:05:00 (UTC+8)
    出版者: 國立中央大學
    摘要: 本研究可經混合所合成之有機高分子溶液與無機溶膠,製備出透明且具疏水疏油之硬質膜。除了探討有機高分子溶液與無機溶膠之相容性,也探討高分子溶液與無機溶膠的組成對於有機無機膜之透明度、硬度、疏水、疏油性質的影響。有機高分子溶液是以甲基丙烯酸甲酯(MMA)為主要單體,搭配甲基丙烯酸(MAA)、3-(甲基丙烯酰氧)丙基三甲氧基矽烷(MPTMS)以及十三氟辛醇丙烯酸酯(PFHEA)行共聚合反應而得。無機溶膠以四乙氧基矽烷(TEOS)、甲基三甲氧基矽烷(MTMS)、MPTMS三種矽氧烷經溶膠凝膠程序而製得。
    當使用IPA/MEK共溶劑下,可以製備出透明有機高分子溶液與無機溶膠,兩者經混合後塗布亦可得到透明之有機無機膜。
    當有機高分子溶液為PMMA溶液時,使用MTMS/TEOS溶膠可提升有機無機膜之疏水性;若使用MPTMS/TEOS溶膠時,則可提升透光度以及硬度;而在使用MPTMS/MTMS溶膠時,可得透光度98%以上,硬度為6H,水之接觸角則為95度之有機無機膜。
    當有機高分子溶液為P(MAA/MMA)溶液時,可提升有機無機膜之硬度,但只有在使用MPTMS/TEOS溶膠之條件下,可製備出透光度為100.4%,硬度為8H以及水之接觸角為63.3度之有機無機膜。
    當有機高分子溶液為P(MPTMS/MMA)溶液時,可與MTMS/TEOS、MPTMS/TEOS溶膠製備透明之有機無機膜,特別是使用MTMS/TEOS溶膠時,可得透光度為99.5%,硬度為8H,水之接觸角達83.2度之有機無機膜。
    當有機高分子溶液為P(PFHEA/MPTMS/MMA)溶液時,可與MTMS/TEOS、MPTMS/TEOS溶膠製備透明之有機無機膜,特別是使用MTMS/TEOS溶膠時,可得透光度為100.4%、硬度為8H、水與二碘甲烷之接觸角是107度以及72.6度之有機無機膜。
    ;Thermo-curable nano-sized colloidal silica sol was synthesized and modified by coupling agents, methyl- trimethoxysilane (MTMS), and 3-(trimethoxysilyl)propyl methacrylate (MPTMS) in the presence of tetraethoxysilane (TEOS). These silica sols were prepared by keeping the molar ratio of silane monomers, solvent, water (H2O) (pH=1) constant at 1: 6: 4, respectively. On the other hand, PMMA modified solution was prepare by polymerization of methyl methacrylate (MMA) with methacrylic acid (MAA), MPTMS and perfluorohexylethyl acrylate (PFHEA). In order to improve the miscibility in silica sol and PMMA modified solution, isopropyl alcohol (IPA)/methyl ethyl ketone (MEK) (IPA:MEK=1:1) was chosen as the mixture solvent. The prepared polymer/silica films on PMMA substrates were characterized by UV-Vis spectroscopy, pencil hardness test, static water contact angle (WCA) and static diiodomethane contact angle (OCA) measurements. The effects of the composition of silane monomers, the ratio of silica sol to polymer modified solution, and the amount of MAA, MPTMS or PFHEA in polymer modified solution on the transparent, pencil hardness and hydrophobicity of prepared films were investigated. The results showed that with increasing the amount of MTMS and MPTMS in the sols, the hydrophobic and transparent properties were improved, respectively. On the other hands, with increasing MPTMS in the polymer solution, the transparent and hardness were improved. In addition, with increasing PFHEA in the polymer solution, the hydrophobic and oleophobic were improved.
    The best result showed that relative light transmittance, pencil hardness, WCA and OCA of polymer/silica hybrid film on PMMA substrate were reached to 100.4%, 8H, 107。and 72.6。, respectively.
    显示于类别:[化學工程與材料工程研究所] 博碩士論文

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