标题: 高分子薄膜受限于阳极氧化铝模板内奈米孔洞之不稳定现象
Instability in Polymer Thin Films Coated in the Naonopores of Anodic Aluminum Oxide Templates
作者: 蔡佳展
Tsai, Chia-Chan
陈俊太
Chen, Jiun-Tai
应用化学系硕博士班
关键字: 模板;退火;雷利不稳定;形貌图;反润湿;annealing;dewetting;template;morphology diagram;Rayleigh instability
公开日期: 2015
摘要: 此论文主要探讨聚苯乙烯 (polystyrene, PS) 薄膜受限于阳极氧化铝 (anodic aluminum oxide, AAO) 模板内奈米孔洞的退火诱导之不稳定现象,根据雷利不稳定 (Rayleigh instability) 理论和不同的热退火条件,受限之PS奈米结构会转变成波动状结构 (undulated structures)、雷利不稳定结构 (Rayleigh-instability-induced structures)、或奈米柱结构。
研究工作分成七个部分。第一个部分透过溶液润湿法将高分子导入AAO模板后制备受限PS奈米管后进行热退火处理,依据热退火条件与结构之关系建立形貌图 (morphology diagram) 以阐述形貌转变的机制与分子量效应,此外,还将不稳定行为量化统计,讨论理论值和实验值偏差的可能原因。
为了将影响形貌转变因素探讨清楚,第二部分透过不同浓度PS溶液制备管壁厚度相异的奈米管以讨论厚度效应,并建立形貌图与量化统计说明受限PS奈米管经雷利不稳定理论转变形貌的行为偏差之主要原因。
第三部分则是透过溶剂蒸气诱导润湿法制备受限之PS奈米管,讨论分子构形 (conformation) 对形貌转变的影响,并以Good & Girifalco所提出的介面张力计算方式辅助说明构形与张力之关系。
第四部分则是在受限之PS奈米管系统中引入非溶剂的乙二醇 (ethylene glycol, EG) 进行热退火处理,讨论其不稳定行为和形貌转变机制。
第五部分用烷基三氯矽烷与带有羟基的AAO模板表面行自组装单层膜反应,使亲水性AAO模板转变成疏水性的AAO模板,讨论不同碳链数烷基三氯矽烷表面改质效果,并且展示此疏水性奈米孔洞模板于油/水分离的应用潜力。
除雷利不稳定之外,在第六个部分也讨论另一种高分子不稳定行为─反润湿 (dewetting)。控制高分子溶液浓度以制备不同厚度的聚甲基丙烯酸甲酯 (poly (methyl methacrylate), PMMA) 薄膜于疏水性模板孔洞中,经热退火后可制备出高分子奈米半球,并讨论其反润湿行为模式。
最后一个部分是在一个非受限系统中,透过线断法 (breaking thread method)讨论不同高分子黏度比对雷利不稳定的影响,并且藉由分析材料形貌转变过程计算出不稳定行为的成长速率 (growth rate) 与不同温度条件下之介面张力。
This work investigates the annealing-induced instability of polystyrene (PS) thin films coated in the nanopores of anodic aluminum oxide (AAO) templates. According to the theory of the Rayleigh instability, PS nanotubes transform into undulated structures, Rayleigh-instability-induced structures, or nanorods under different annealing conditions.
This thesis is divided into seven parts. In the first part, we study the annealing-induced instability of confined PS nanotubes fabricated by a solution-wetting method. Based on the correlation between the morphologies and the annealing conditions, we construct morphology diagrams to elucidate the mechanism and the effects of different molecular weights. In addition, quantitative studies of the transformation process are performed. The discrepancies between the experimental values and the theoretical values are also explained.
To clarify the factors of the transformation process, in the second part, we study the effect of the wall thicknesses of PS nanotubes using solutions with different concentrations. The discrepancies of the instability behavior are explained by constructing morphology diagrams and performing quantitative studies.
In the third part, we study the effect of the polymer conformation by fabricating PS nanotubes with a solvent-vapor-induced-wetting method. The relationship between the polymer conformation and the interfacial tension is explained by an equation proposed by Good and Girifalco.
In the fouth part, instability studies are performed by annealing the samples in the presence of ethylene glycol to discuss further the instability behavior and the mechanism of the transformation process.
In the fifth part, the hydrophilic surfaces of prestine AAO templates are modified by the self-assembly monolayer method with different alkyltrichlorosilane derivatives and the surface property transforms into hydrophobic. The wetting mode of alkyltrichlorosilanized AAO templates is studied, and the potential for separation of oil/ water mixtures is demonstrated.
In addition to the Rayleigh instability, the dewetting behaviors of poly (methyl methacrylate) (PMMA) thin films coated in the nanopores of modified AAO templates are also investigated. In the sixth part, we fabricate the polymer nano-hemispheres and discuss the different dewetting modes using polymer thin films with different thicknesses.
In the last part, we study the effect of polymer viscosity ratio of non-confinened Rayleigh instability (breaking thread method) by analyzing the transformation processes induced by thermal annealing. Furthermore, the interfacial tensions between both polymers at different temperatures can be inferred by the growth rates of the instability.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070052532
http://hdl.handle.net/11536/126654
显示于类别:Thesis