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首页> 外文期刊>Journal of Physics. Condensed Matter >Kaleidoscopic morphologies from ABC star-shaped terpolymers
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Kaleidoscopic morphologies from ABC star-shaped terpolymers

机译:ABC星形三元共聚物的万花筒形态

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Star-shaped terpolymers of the ABC type composed of incompatible polymer components give a variety of ordered structures with mesoscopic length scales depending on their composition ratio. Their peculiar features are summarized in this report. Polymer components adopted are polyisoprene(I), polystyrene(S) and poly(2-vinylpyridine)(P), and many monodisperse samples of the I _XS_YP_Z type were anionically prepared. Firstly our focus is on molecules of the I_(1.0)S_(1.0)P_(x1) type, where x_1 is only a variable. The complex but systematic morphology change was displayed within the range 0.2 ≤ x_1 ≤ 10, that is, their structures change from spherical plus lamellae structure for I_(1.0)S_(1.0)P_(0.2) to periodic tilings (0.4 ≤ x_1 ≤ 1.9), then to lamellae-in-lamella (3.0 ≤ x_1 ≤ 4.9) and lamellae-in-cylinder (7.9 ≤ x_1 ≤ 10) structures with increasing x_1. Here if we pay attention to the structural variation of the P domain inclusively, it transforms from sphere to cylinder, lamella and then to matrix, which is the same as that for linear polymers. Among them, several periodic Archimedean tiling patterns can be naturally formed when the relative lengths of the three chains are close to one another. Moreover, it has been found that the tiling zone is spread out widely. For example, the series I_(1.0)S_(1.8)P_(x2) (with 0.8 ≤ x_2 ≤ 2.9) and the other series I_(1.0)S_yP_(2.0) (with 1.1 ≤ y ≤ 2.7) show mostly Archimedean tilings. Additionally, block copolymer/homopolymer blends with a composition of I1.0S 2.7P2.5 reveal a quasicrystalline tiling with dodecagonal symmetry. Furthermore, a zinc-blende-type four-branched network structure was created just a little outside of the tiling region for a block copolymer/homopolymer blend of I_(1.0)S_(2.3)P_(0.8). When some more asymmetry in chain length is introduced, hyperbolic tiling on a gyroid membrane has successfully been constructed for the sample I _(1.0)S_(1.8)P_(3.2) and it transforms into a hierarchical cylinders-in-lamella structure with further increase in P content to I_(1.0)S_(1.8)P_(6.4). Thus, kaleidoscopic morphologies have been generated from ABC star-shaped terpolymers and their structural change has turned out to be very sensitive to relative compositions
机译:由不相容的聚合物组分组成的ABC型星形三元共聚物会根据其组成比提供各种具有介观长度尺度的有序结构。本报告总结了它们的独特功能。所采用的聚合物组分是聚异戊二烯(I),聚苯乙烯(S)和聚(2-乙烯基吡啶)(P),并且阴离子制备了许多I_XS_YP_Z型单分散样品。首先,我们的重点是I_(1.0)S_(1.0)P_(x1)类型的分子,其中x_1只是一个变量。复杂但系统的形态变化显示在0.2≤x_1≤10的范围内,即它们的结构从I_(1.0)S_(1.0)P_(0.2)的球形加薄片结构变为周期性平铺(0.4≤x_1≤1.9) ),然后以x_1递增的方式生成层状结构(3.0≤x_1≤4.9)和圆柱状结构(7.9≤x_1≤10)。在这里,如果我们全神贯注地关注P结构域的结构变化,它会从球体转变为圆柱体,薄片,然后转变为基体,这与线性聚合物相同。其中,当三个链的相对长度彼此接近时,可以自然地形成几种周期性的阿基米德平铺图案。此外,已经发现铺砖区广泛地分布。例如,系列I_(1.0)S_(1.8)P_(x2)(0.8≤x_2≤2.9)和其他系列I_(1.0)S_yP_(2.0)(1.1 y≤2.7)显示大多数阿基米德平铺。另外,组成为I1.0S 2.7P2.5的嵌段共聚物/均聚物共混物显示出具有十二边形对称性的准晶体平铺。此外,对于I_(1.0)S_(2.3)P_(0.8)的嵌段共聚物/均聚物共混物,在拼贴区域的一点外侧创建了一个锌-混合型四支网络结构。当引入更多的链长不对称性时,已经成功地为样品I _(1.0)S_(1.8)P_(3.2)在双螺旋膜上构造了双曲线平铺,并进一步转化为分层的层状圆柱体结构P含量增加到I_(1.0)S_(1.8)P_(6.4)。因此,已经从ABC星形三元共聚物产生了万花筒形态,并且其结构变化已证明对相关组成非常敏感

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