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Order-order transition between equilibrium ordered bicontinuous nanostructures of double diamond and double gyroid in stereoregular block copolymer

机译:立体规则嵌段共聚物中双金刚石和双螺线管的平衡有序双连续纳米结构之间的有序过渡

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摘要

While ordered bicontinuous double diamond (OBDD) in block copolymers has always been considered as an unstable structure relative to ordered bicontinuous double gyroid (OBDG), here we report the existence of a thermodynamically stable OBDD structure in a diblock copolymer composed of a stereoregular block. A slightly asymmetric syndiotactic polypropylene-block-polystyrene (sPP-b-PS) as cast from xylene was found to display the OBDD morphology. When the OBDD-forming diblock was heated, this structure transformed to the OBDG phase at ca. 155 °C. Interestingly, OBDD was recovered upon cooling even in the temperature range above melting point of sPP, indicating that OBDD was a thermodynamically stable structure for sPP-b-PS melt, which was in contradiction to the conventional view. We propose that the larger free energy cost encountered in OBDD due to the larger packing frustration may be compensated sufficiently by the release of free energy due to local packing of the conformationally ordered segments of sPP blocks, which stabilizes the OBDD structure at the lower temperatures.
机译:尽管嵌段共聚物中的有序双连续双金刚石(OBDD)一直被认为是相对于有序双连续双螺线管(OBDG)的不稳定结构,但在这里我们报道了由立体规则嵌段组成的二嵌段共聚物中存在热力学稳定的OBDD结构。发现由二甲苯浇铸的稍微不对称的间同立构聚丙烯嵌段聚苯乙烯(sPP-b-PS)具有OBDD形态。当加热形成OBDD的二嵌段时,该结构在约200℃转变成OBDG相。 155℃。有趣的是,即使在高于sPP熔点的温度范围内冷却,OBDD也会被回收,这表明OBDD是sPP-b-PS熔体的热力学稳定结构,这与传统观点相反。我们建议,由于spp块的构象有序链节的局部堆积而导致的自由能释放,可以通过释放更大的填充能量来充分补偿OBDD中遇到的更大的自由能成本,这可以在较低温度下稳定OBDD结构。

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