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Solvent-annealing-induced nanowetting in templates: Towards tailored polymer nanostructures

机译:溶剂退火诱导的模板中的纳米润湿:面向定制的聚合物纳米结构

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We study the solvent-annealing-induced nanowetting in templates using porous anodic aluminum oxide membranes. The morphology of polystyrene and poly(methyl methacrylate) nanostructures can be controlled, depending on whether the swollen polymers are in the partial or complete wetting regimes, which are characterized by the spreading coefficient. When the swollen polymers are in the partial wetting regime, polymers wet the nanopores by capillary action, resulting in the formation of polymer nanorods. When the swollen polymers are in the complete wetting regime, polymers form wetting layers in the nanopores, resulting in the formation of polymer nanotubes. The solubility parameters of polymers and solvents are also used to predict the wetting behavior of swollen polymers in cylindrical geometry. Solvent-annealing-induced nanowetting in templates is developed to fabricate tailored polystyrene and poly(methyl methacrylate) nanostructures. When the swollen polymers are in the partial wetting regime, polymers wet the nanopores by capillary action, resulting in the formation of polymer nanorods. When the swollen polymers are in the complete wetting regime, polymers form wetting layers in the nanopores, resulting in the formation of polymer nanotubes.
机译:我们研究使用多孔阳极氧化铝膜在模板中的溶剂退火诱导的纳米润湿。可以控制聚苯乙烯和聚甲基丙烯酸甲酯纳米结构的形态,这取决于溶胀的聚合物是处于部分润湿还是完全润湿的状态,其特征在于扩散系数。当溶胀的聚合物处于部分润湿状态时,聚合物通过毛细管作用润湿纳米孔,导致形成聚合物纳米棒。当溶胀的聚合物处于完全润湿状态时,聚合物会在纳米孔中形成润湿层,从而形成聚合物纳米管。聚合物和溶剂的溶解度参数还用于预测圆柱几何形状中溶胀的聚合物的润湿行为。模板中溶剂退火诱导的纳米润湿被开发来制造定制的聚苯乙烯和聚(甲基丙烯酸甲酯)纳米结构。当溶胀的聚合物处于部分润湿状态时,聚合物通过毛细管作用润湿纳米孔,导致形成聚合物纳米棒。当溶胀的聚合物处于完全润湿状态时,聚合物会在纳米孔中形成润湿层,从而形成聚合物纳米管。

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