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Super-Helically Twisted Strands of Poly(m-phenylene isophthalamide) (MPDI)

机译:聚间亚苯基间苯二甲酰胺(MPDI)的超螺旋绞线

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Low-dose-high-resolution electron microscopy (LD-HREM) was used to analyze the structure of regularly twisted poly(m-phenylene isophthalamide) (MPDI) strands formed by slow crystallization from solution. The MPDI chains were found to aggregate into regular assemblies exhibiting uniform twisting at several different length scales ranging from the molecular to the mesoscopic. The MPDI polymer backbone formed a flattened helical structure that was organized into twisted bundles. The helical molecular structure promoted good lateral packing, but led to an open core running down the helical axis, which is presumably filled with solvent and calcium chloride. The electron diffraction and HREM data were consistent with a pseudohexagonal unit cell with a=b=1.65+-0.02 nm, #gamma#=120 +- 0.5 deg C, and c=0.378 nm, where the c-axis was oriented nominally parallel to the twist axis of the fiber. The strain induced by the mesoscopic twisting is compensated for by lateral shift disorder between the polymer helices, as confirmed by direct HREM imaging.
机译:低剂量高分辨率电子显微镜(LD-HREM)用于分析溶液中缓慢结晶形成的规则加捻的聚(间亚苯基间苯二甲酰胺)(MPDI)链的结构。发现MPDI链聚集成规则的装配体,在分子到介观的几个不同的长度尺度上表现出均匀的扭曲。 MPDI聚合物主链形成扁平的螺旋结构,该螺旋结构被组织成扭曲的束。螺旋分子结构促进了良好的侧向堆积,但导致沿螺旋轴向下延伸的开核,可能充满了溶剂和氯化钙。电子衍射和HREM数据与a = b = 1.65 + -0.02 nm,#gamma#= 120 +-0.5℃和c = 0.378 nm的伪六边形晶胞一致,其中c轴标称平行到光纤的扭曲轴。如通过直接HREM成像所证实的,由介观扭曲引起的应变被聚合物螺旋之间的横向移位无序所补偿。

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