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Double-twisted helical lamellar crystals in a synthetic main-chain chiral polyester similar to biological polymers

机译:双绞线螺旋状层晶体在合成主链手性聚酯中,类似于生物聚合物

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Phase structures and transformation mechanisms of chiral biological and synthetic polymers are fundamentally important topics in understanding their macroscopic responses in different environments. Synthetic polymers having chiral centers along the main-chain backbones are difficult to polymerize and thus, up to today only very few examples have been reported. In this study, we describe a novel observation in crystalline morphology, double-twisted helical lamellar crystals, evolved from the melt in one synthetic chiral polyester. These crystals have been found to be similar to Bombyx mori silk fibroin crystals of the #beta#-modification grown from solution. In a less ordered form, this geometry has also been found in a chromosome of dinoflaggellate (in Prorocentrum micans). Crystal structures of this polyester in both flat and helical lamellar crystals are identical regardless of the twisted helical geometry. The polymer chain folding direction in both flat and helical lamellar crystals is along the same direction (along the long axis of the lamellar crystals). The geometrically frustrated helical crystals may result from a competition between chain molecular close packing (parallelism) and chiral configuration.
机译:手性生物和合成聚合物的相结构和转化机制是了解不同环境中宏观反应的基本重要的主题。具有沿主链骨架的手性中心的合成聚合物难以聚合,因此,截至今天仅报告了很少的例子。在这项研究中,我们描述了一种新的晶体形态,双绞线螺旋状层状晶体的新观察,从一个合成的手性聚酯中的熔体演变。已经发现这些晶体类似于从溶液中生长的#β#-modification的Bombyx Mori丝素素晶体。以一种较少的顺序形式,这种几何形状也已发现在丁蛋白染色体(鼠泊氏蛋白酶Micans中)。无论扭曲的螺旋几何形状如何,扁平和螺旋形状层状晶体中这种聚酯的晶体结构都是相同的。平坦和螺旋层状晶体中的聚合物链折叠方向沿相同的方向(沿着层状晶体的长轴)。几何沮丧的螺旋晶体可能由链分子密封包装(平行)和手性构型之间的竞争产生。

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