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首页> 外文期刊>Macromolecules >Order-Order Transition from Ordered Bicontinuous Double Diamond to Hexagonally Packed Cylinders in Stereoregular Diblock Copolymer/Homopolymer Blends
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Order-Order Transition from Ordered Bicontinuous Double Diamond to Hexagonally Packed Cylinders in Stereoregular Diblock Copolymer/Homopolymer Blends

机译:从订购的双连续双钻石到立体型二嵌段共聚物/均聚物共混物中的订购顺序转换到六角包装缸

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Our previous works have disclosed a thermodynamically stable ordered bicontinuous double diamond (OBDD) structure and the order-order transition (OOT) between OBDD and ordered bicontinuous double gyroid (OBDG) phases in a stereoregular diblock copolymer, syndiotactic polypropylene-block-polystyrene (sPP-b-PS). Here we investigate the effect of blending with a small amount of sPP homopolymer (h-sPP) on the stability of the OBDD phase, where h-sPP formed the dry-brush mixture with the minority sPP block chains in the network microdomains due to their comparable molecular weights. The OBDD structure developed in the blend was found to exist over a broader temperature window than that formed in the neat sPP-b-PS. Nevertheless, the OBDD-OBDG transition displayed by the neat diblock was no longer observed in the blends; instead, the OBDD phase transformed into the hexagonally packed cylinder (HEX) structure on heating, indicating that HEX superseded OBDG upon blending with h-sPP. According to the experimentally observed conservation of the lattice parameter across the OBDD-HEX transition, we propose a possible kinetic pathway through which the OBDD tetrapods may reorganize and merge into a cylinder along the direction of the space diagonal in a unit cell; the cylinders developed from different unit cells subsequently shifted and fused at their ends for reducing the interfacial free energy and the packing frustration of the majority blocks, thereby turning into the hexagonal packing.
机译:我们以前的作品公开了一种热力学稳定的有序的双连续双金刚石(OBDD)结构以及OBDD和有序的双周末双陀螺(OBDG)相位之间的秩序转换(OOT)在立体间二嵌段共聚物中,Syndoticatic聚丙烯 - 嵌段 - 聚苯乙烯(SPP -b-ps)。在这里,我们研究了少量SPP均聚物(H-SPP)对OBDD阶段的稳定性的影响,其中H-SPP由于它们的网络微膜中与少数群体SPP块链形成干刷混合物可比较的分子量。发现混合物中开发的OBDD结构在比在整齐的SPP-B-PS中形成的温度窗口存在于更宽的温度窗口上。然而,在混合物中不再观察到整个DIBlock显示的OBDD-OBDG过渡;相反,OBDD相位在加热时转换成六角填充圆柱(六角端)结构,表明六角六角在与H-SPP混合时取代OBDG。根据通过Obdd-Hex过渡的实验观察晶格参数的保护,我们提出了一种可能的动力路路,OBDD Tetrapods可以通过该动力路路沿着单元电池中的空间方向重新组织并合并到圆柱体中;从不同单元电池开发的气缸随后在其端部移动并熔合,以减少界面自由能量和大多数块的填充挫折,从而进入六边形包装。

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