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首页> 外文期刊>Physical Review, B. Condensed Matter >Helical single-lamellar crystals thermotropically formed in a synthetic nonracemic chiral main-chain polyester
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Helical single-lamellar crystals thermotropically formed in a synthetic nonracemic chiral main-chain polyester

机译:在合成非外消旋手性主链聚酯中热致形成的螺旋单层晶体

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摘要

Phase structures and transformation mechanisms of nonracemic chiral biological and synthetic polymers are fundamentally important topics in understanding their macroscopic responses in different environments. It has been known for many years that helical structures and morphologies can exist in low-ordered chiral liquid crystalline (LC) phases. However, when the chiral liquid crystals form highly ordered smectic liquid crystal phases, the helical morphology is suppressed due to the crystallization process. A double-twisted morphology has been observed in many liquid crystalline biopolymers such as dinoflaggellate chromosomes (in Prorocentrum micans) in an in vivo arrangement. Helical crystals grown from solution have been reported in the case of Bombyx mori silk fibroin crystals having the beta modification. This study describes a synthetic nonracemic chiral main-chain LC polyester that is able to thermotropically form helical single lamellar crystals. Flat single lamellar crystals can also be observed under the same crystallization condition. Moreover, flat and helical lamellae can coexist in one single lamellar crystal, within which one form can smoothly transform to the other. Both of these crystals possess the same structure, although translational symmetry is broken in the helical crystals. The polymer chain folding direction in both flat and helical lamellar crystals is determined to be identical, and it is always along the long axis of the lamellae. This finding provides an opportunity to study the chirality effect on phase structure, morphology, and transformation in condensed states of chiral materials. [S0163-1829(99)01042-5]. [References: 28]
机译:非外消旋手性生物和合成聚合物的相结构和转变机理是理解其在不同环境中的宏观响应的根本重要主题。多年来已知螺旋结构和形态可以存在于低阶手性液晶(LC)相中。然而,当手性液晶形成高度有序的近晶液晶相时,由于结晶过程,螺旋形貌受到抑制。在许多液晶生物聚合物中,以体内排列方式观察到双扭曲形态,例如二鞭毛藻染色体(在原ro中)。对于具有β修饰的家蚕丝素蛋白晶体,已经报道了从溶液中生长的螺旋晶体。这项研究描述了一种合成的非消旋手性主链LC聚酯,该聚酯能够热致形成单层螺旋晶体。在相同的结晶条件下也可以观察到扁平的单片层状晶体。而且,扁平的和螺旋状的薄片可以共存于一个单一的层状晶体中,其中一种形式可以平滑地转变成另一种形式。这两种晶体都具有相同的结构,尽管在螺旋晶体中破坏了平移对称性。确定扁平和螺旋层状晶体中的聚合物链折叠方向相同,并且始终沿薄片的长轴。这一发现为研究手性对手性材料的凝聚态的相结构,形态和相变的影响提供了机会。 [S0163-1829(99)01042-5]。 [参考:28]

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