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Inaugural Article: Origins of low-symmetry phases in asymmetric diblock copolymer melts

机译:就职文章:不对称二嵌段共聚物熔体中低对称相的起源

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摘要

Cooling disordered compositionally asymmetric diblock copolymers leads to the formation of nearly spherical particles, each containing hundreds of molecules, which crystallize upon cooling below the order–disorder transition temperature (TODT). Self-consistent field theory (SCFT) reveals that dispersity in the block degrees of polymerization stabilizes various Frank–Kasper phases, including the C14 and C15 Laves phases, which have been accessed experimentally in low-molar-mass poly(isoprene)-b-poly(lactide) (PI-PLA) diblock copolymers using thermal processing strategies. Heating and cooling a specimen containing 15% PLA above and below the TODT from the body-centered cubic (BCC) or C14 states regenerates the same crystalline order established at lower temperatures. This memory effect is also demonstrated with a specimen containing 20% PLA, which recrystallizes to either C15 or hexagonally ordered cylinders (HEXC) upon heating and cooling. The process-path–dependent formation of crystalline order shapes the number of particles per unit volume, n/V, which is retained in the highly structured disordered liquid as revealed by small-angle X-ray scattering (SAXS) experiments. We hypothesize that symmetry breaking during crystallization is governed by the particle number density imprinted in the liquid during ordering at lower temperature, and this metastable liquid is kinetically constrained from equilibrating due to prohibitively large free energy barriers for micelle fusion and fission. Ordering at fixed n/V is enabled by facile chain exchange, which redistributes mass as required to meet the multiple particle sizes and packing associated with specific low-symmetry Frank–Kasper phases. This discovery exposes universal concepts related to order and disorder in self-assembled soft materials.
机译:冷却无序的组成不对称的二嵌段共聚物会导致形成几乎球形的颗粒,每个颗粒包含数百个分子,这些颗粒在冷却至有序-无序转变温度(TODT)以下时会结晶。自洽场理论(SCFT)表明,嵌段聚合度的分散性稳定了各种Frank-Kasper相,包括C14和C15 Laves相,这些相已在低摩尔质量聚异戊二烯-b-中进行了实验。聚丙交酯(PI-PLA)二嵌段共聚物,采用热处理工艺。加热和冷却从体心立方(BCC)或C14态在TODT上方和下方包含15%PLA的样品,可再生在较低温度下建立的相同晶序。含有20%PLA的样品也证明了这种记忆效果,该样品在加热和冷却后会重结晶为C15或六角有序圆柱体(HEXC)。如小径X射线散射(SAXS)实验所揭示的,依赖于过程路径的晶序形成会影响每单位体积的颗粒数量n / V,该数量保留在高度结构化的无序液体中。我们假设结晶过程中的对称性破坏受在较低温度下订购时在液体中压印的粒子数密度的控制,并且由于胶束聚变和裂变的过大自由能垒,这种亚稳态液体在动力学上无法平衡。固定链交换可实现固定n / V的订购,该链交换可根据需要重新分配质量,以满足与特定低对称性Frank-Kasper相相关的多种粒径和堆积。这一发现揭示了与自组装软材料中的有序和无序有关的通用概念。

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