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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Bulk morphologies of polystyrene-block-polybutadiene-block-poly(tert-butyl methacrylate) triblock terpolymers
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Bulk morphologies of polystyrene-block-polybutadiene-block-poly(tert-butyl methacrylate) triblock terpolymers

机译:聚苯乙烯嵌段聚丁二烯嵌段聚甲基丙烯酸叔丁酯三嵌段三元共聚物的本体形态

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摘要

The self-assembly of block copolymers in the bulk phase enables the formation of complex nanostructures with sub 100 nm periodicities and long-range order, both relevant for nanotechnology applications. Here, we map the bulk phase behavior of polystyrene-block-polybutadiene-block-poly(tert-butyl methacrylate) (SBT) triblock terpolymers on a series of narrowly distributed polymers with widely different block volume fractions, phi(S), phi(B) and phi(T). In dependence of phi, we find the lamella-lamella, core-shell cylinder, cylinder-in-lamella and core-shell gyroid morphology, but also a rarely observed cylinder-in-lamella phase. The bulk morphologies are thoroughly characterized by transmission electron microscopy (TEM) and small angle X-ray scattering (SAXS) and display unusually broad stability regions, i.e. morphologies are observed over a broad range of compositions. We attribute this phase behavior to the asymmetric distribution of block-block incompatibilities, along the SBT block sequence, which are relatively large for S/B and S/T interfaces, but small for B/T. The higher enthalpic penalties at the S/B and S/T interface cause B to preferentially spread on the T microdomain thereby adopting its geometry. The morphological behavior of SBT is thus dominated by the volume ratio of the end blocks, phi(S) and phi(T), which reduces the number of potential morphologies to only a few, mostly the core-shell analogue of diblock copolymer morphologies. In general, a simplified terpolymer bulk behavior with large stability regions for morphologies offers straightforward synthetic targeting of specific morphologies that usually only appear in a small parameter space as demonstrated here on the core-shell gyroid. (C) 2015 Elsevier Ltd. All rights reserved.
机译:嵌段共聚物在本体相中的自组装能够形成具有小于100 nm周期性和长程有序的复杂纳米结构,这两者都与纳米技术应用相关。在这里,我们将聚苯乙烯-嵌段-聚丁二烯-嵌段-聚(甲基丙烯酸叔丁酯)(SBT)三嵌段三元共聚物的本体相行为映射到一系列窄分布的聚合物上,这些聚合物的嵌段体积分数phi(S),phi( B)和phi(T)。根据phi的关系,我们发现了薄片-薄片,核-壳圆柱体,薄片-圆柱体和核-壳螺旋体形态,但也很少观察到薄片-圆柱体相。本体形态通过透射电子显微镜(TEM)和小角度X射线散射(SAXS)被充分表征,并显示出异常宽广的稳定性区域,即在广泛的组成范围内观察到形态。我们将此相位行为归因于沿着SBT块序列的块-块不兼容性的不对称分布,S / B和S / T接口相对较大,而B / T较小。 S / B和S / T界面上较高的焓罚分使B优先在T微域上扩散,从而采用其几何形状。因此,SBT的形态学行为受端嵌段phi(S)和phi(T)的体积比支配,这将潜在形态的数量减少到仅几个,主要是二嵌段共聚物形态的核-壳类似物。通常,简化的三元共聚物本体行为具有较大的形貌稳定性区域,可以直接合成靶向特定形貌,通常仅在较小的参数空间中出现,如此处在核-壳形螺旋体上所示。 (C)2015 Elsevier Ltd.保留所有权利。

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