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首页> 外文期刊>Macromolecules >Morphological development in solvent-cast polystyrene-polybutadiene-polystyrene (SBS) triblock copolymer thin films
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Morphological development in solvent-cast polystyrene-polybutadiene-polystyrene (SBS) triblock copolymer thin films

机译:溶剂浇铸的聚苯乙烯-聚丁二烯-聚苯乙烯(SBS)三嵌段共聚物薄膜的形态学发展

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摘要

This paper describes morphological development in solvent-cast polystyrene (PS)-polybutadiene (PB)-polystyrene (SBS) triblock copolymer thin films (30 wt % PS) as a function of solvent evaporation rate and post-evaporation annealing. Films were cast onto NaCl substrates to a thickness of order 100 nm. Plan-view and cross-sectional measurements by transmission electron microscopy show that the equilibrium morphology of in-plane cylinders is generated when films are given relatively long exposure to high solvent concentration or to elevated temperature. Alternate and metastable morphologies are generated under kinetically constrained conditions. Fast evaporation (similar to 200 nL/s) produces a microphase-separated microstructure with no long-range order. Intermediate evaporation (similar to 5 nL/s) generates hexagonally packed (vertical) PS cylinders in a PB matrix with the cylinder axis perpendicular to the film plane. Slow evaporation (similar to 1.5 nL/s) leads to a duplex microstructure of PS cylinders with domains of either vertical or in-plane cylinders. Post-evaporation annealing of films supported by a Cu TEM grid (18 h, 140 degrees C) converts the duplex morphology into one with only in-plane PS cylinders. Very slow solvent evaporation (similar to 0.2 nL/s) produces a fully in-plane cylinder microstructure. A distortion of the hexagonal PS array in the as-cast in-plane structure suggests that the as-cast block copolymer is affected by anisotropic deswelling during the final stages of solvent evaporation. [References: 40]
机译:本文描述了溶剂流延聚苯乙烯(PS)-聚丁二烯(PB)-聚苯乙烯(SBS)三嵌段共聚物薄膜(30 wt%PS)的形貌发展与溶剂蒸发速率和蒸发后退火的关系。将膜流延到NaCl衬底上至约100nm的厚度。透射电子显微镜的平面图和横截面测量结果表明,当薄膜在较高的溶剂浓度或较高的温度下相对长时间地暴露时,会产生面内圆柱体的平衡形态。在动力学上受约束的条件下生成交替和亚稳态的形态。快速蒸发(类似于200 nL / s)产生了微相分离的微观结构,没有长程有序。中间蒸发(类似于5 nL / s)会在PB矩阵中生成六边形填充(垂直)的PS圆柱,圆柱轴垂直于胶片平面。缓慢的蒸发(类似于1.5 nL / s)会导致PS圆柱体具有垂直或平面圆柱体域的双重微观结构。由Cu TEM网格支撑的薄膜的汽化后退火(18 h,140摄氏度)将双相形态转化为仅具有面内PS圆柱的双相形态。极慢的溶剂蒸发(类似于0.2 nL / s)会产生完全面内的圆柱体微观结构。铸态平面结构中六边形PS阵列的变形表明,铸态嵌段共聚物在溶剂蒸发的最后阶段受到各向异性溶胀的影响。 [参考:40]

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