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首页> 外文期刊>European Polymer Journal >Structure formation in nanophase-separated systems with lamellar morphology: Comb-like vs. linear precision polymers
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Structure formation in nanophase-separated systems with lamellar morphology: Comb-like vs. linear precision polymers

机译:具有层状形态的纳比分离系统中的结构形成:梳状。 线性精密聚合物

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摘要

We report findings of a comparative study of a comb-like polymer, poly(1,4-phenylene-2,5-n-didecyloxy terephthalate) [PPDOT] and a linear chain precision polymer consisting of a methyl protected 2,6-diaminopyridine group after every 20th methylene unit of a linear saturated polyethylene chain [PDAPS20]. Both polymers exhibit lamellar morphologies related to a nanophase separation of the methylene sequences from ring-like sub-units as seen in X-ray diffraction data. Although their chain architecture is different, investigations on oriented samples of both PPDOT and PDAPS show that their lamellae orient in such a way that their surface normals tend to be perpendicular to the shear fields leading to different average chain orientations. A novel approach considering the volume occupied per CH2unit in the alkyl nanodomain calculated on the basis of unit cell considerations is employed to understand the packing state of the alkyl segments. While modification B of PPDOT exhibits densely packed alkyl nanodomains, modification A of PPDOT and PDAPS20 show a relatively loose packing. At the end, we attempt to bring together these two classes of polymers exhibiting nanophase-separated morphologies by means of a classification scheme based on the structural arrangement of the sub-units within their respective domains, highlighting their similarities and differences.
机译:我们报告了梳状聚合物的比较研究的结果,聚(1,4-亚苯基-2,5-丁酰氧基对苯二甲酸甲酯)[ppdot]和由甲基保护2,6-二氨基吡啶组成的线性链精密聚合物在线饱和聚乙烯链的每20次甲基单元后组[PDAPS20]。两种聚合物都表现出与X射线衍射数据中的环状子单元的亚甲基序列的纳米序列分离有关的层状形态。虽然它们的链式建筑是不同的,但是对PPDOT和PDAP的取向样品的研究表明,它们的薄片定向使得它们的表面法线倾向于垂直于导致不同的平均链取向的剪切场。考虑基于单位细胞考虑根据单位细胞考虑所计算的烷基纳米域的烷基纳米常规占据的体积的一种新方法,以了解烷基段的包装状态。虽然PPDOT的改性B表现出密集地填充烷基纳米染色型,PPDOT和PDAPS20的修饰A显示出相对松散的包装。最后,我们试图通过基于其各个域内的子单元的结构布置,借助于基于它们各自的域内的结构布置,突出它们的相似性和差异,将这两类聚合物聚合物聚集在一起。

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