Glagolev M K, Glagoleva A A, Vasilevskaya V V
A. N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Vavilova ul. 28, Moscow 119991, Russia.
Soft Matter. 2021 Sep 22;17(36):8331-8342. doi: 10.1039/d1sm00759a.
By means of molecular dynamics simulation, the process of the microphase separation in the melts of diblock helix-coil copolymers comprising a flexible and a helical block was studied. The resulting microstructures were examined, and the spatial distribution of the blocks and molecular packing were investigated. The phase diagram was built in terms of the fraction of the helical block and the incompatibility parameter of the blocks. The comparison of the diagrams for helix-coil and the classic coil-coil copolymer blends was carried out. It was shown that the total region where the ordering into distinctive microstructures takes place is similar for both diagrams. But for the helix-coil copolymers the area of the cylinders splits into the region of those with circular and elliptical cross-sections; the bicontinuous phase area is much wider; in the lamellar phases, the helical blocks were oriented precisely perpendicular to the lamellar interface, forming a cohesive interlocked structure of densely packed helices.
通过分子动力学模拟,研究了由柔性链段和螺旋链段组成的二嵌段螺旋-线团共聚物熔体中的微相分离过程。对所得微观结构进行了研究,并考察了链段的空间分布和分子堆积情况。根据螺旋链段的分数和链段的不相容参数构建了相图。对螺旋-线团共聚物和经典线团-线团共聚物共混物的相图进行了比较。结果表明,两种相图中发生有序形成独特微观结构的总区域相似。但对于螺旋-线团共聚物,圆柱相区域分裂为具有圆形和椭圆形横截面的区域;双连续相区域更宽;在层状相中,螺旋链段精确地垂直于层状界面取向,形成紧密堆积螺旋的内聚互锁结构。