【2h】

Dodecagonal quasicrystalline order in a diblock copolymer melt

机译:双嵌段共聚物熔体中的十二角准晶序

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摘要

We report the discovery of a dodecagonal quasicrystalline state (DDQC) in a sphere (micelle) forming poly(isoprene-b-lactide) (IL) diblock copolymer melt, investigated as a function of time following rapid cooling from above the order–disorder transition temperature (TODT = 66 °C) using small-angle X-ray scattering (SAXS) measurements. Between TODT and the order–order transition temperature TOOT = 42 °C, an equilibrium body-centered cubic (BCC) structure forms, whereas below TOOT the Frank–Kasper σ phase is the stable morphology. At T < 40 °C the supercooled disordered state evolves into a metastable DDQC that transforms with time to the σ phase. The times required to form the DDQC and σ phases are strongly temperature dependent, requiring several hours and about 2 d at 35 °C and more than 10 and 200 d at 25 °C, respectively. Remarkably, the DDQC forms only from the supercooled disordered state, whereas the σ phase grows directly when the BCC phase is cooled below TOOT and vice versa upon heating. A transition in the rapidly supercooled disordered material, from an ergodic liquid-like arrangement of particles to a nonergodic soft glassy-like solid, occurs below ∼40 °C, coincident with the temperature associated with the formation of the DDQC. We speculate that this stiffening reflects the development of particle clusters with local tetrahedral or icosahedral symmetry that seed growth of the temporally transient DDQC state. This work highlights extraordinary opportunities to uncover the origins and stability of aperiodic order in condensed matter using model block polymers.
机译:我们报告了在形成聚(异戊二烯-b-丙交酯)(IL)双嵌段共聚物熔体的球(胶束)中发现十二边形准晶态(DDQC)的情况,研究了从有序到无序过渡上方快速冷却后随时间变化的函数使用小角度X射线散射(SAXS)测量的温度(TODT = 66°C)。在TODT和阶跃转变温度TOOT = 42°C之间,形成了平衡的体心立方(BCC)结构,而在TOOT以下的Frank-Kasperσ相是稳定的形态。在T <40°C时,过冷的无序状态会演变成亚稳态DDQC,并随时间转变为σ相。形成DDQC和σ相所需的时间与温度密切相关,在35°C下分别需要几个小时和大约2 d,在25°C下分别需要10多个和200 d。值得注意的是,DDQC仅由过冷的无序状态形成,而当BCC相冷却至TOOT以下时,σ相直接生长,反之亦然。快速过冷的无序材料在大约40°C以下发生了转变,温度从40℃降到40℃,与DDQC的形成有关。我们推测,这种硬化反应反映了具有局部四面体或二十面体对称性的粒子簇的发展,该对称性使种子暂时生长为DDQC状态。这项工作强调了利用模型嵌段聚合物揭示凝结物中非周期性有序和稳定的绝佳机会。

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