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Crystallization of Poly(ethylene)s with Regular Phosphoester Defects Studied at the Air–Water Interface

机译:聚(乙烯)S与定期磷酸酯缺陷的结晶在空气 - 水界面

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摘要

Poly(ethylene) (PE) is a commonly used semi-crystalline polymer which, due to the lack of polar groups in the repeating unit, is not able to form Langmuir or Langmuir–Blodgett (LB) films. This problem can be solved using PEs with hydrophilic groups arranged at regular distances within the polymer backbone. With acyclic diene metathesis (ADMET) polymerization, a tool for precise addition of polar groups after a certain interval of methylene sequence is available. In this study, we demonstrate the formation of Langmuir/LB films from two different PEs with regular phosphoester groups, acting as crystallization defects in the main chain. After spreading the polymers from chloroform solution on the water surface of a Langmuir trough and solvent evaporation, the surface pressure is recorded during compression under isothermal condition. These π-A isotherms, surface pressure π vs. mean area per repeat unit A, show a plateau zone at surface pressures of ~ (6 to 8) mN/m, attributed to the formation of crystalline domains of the PEs as confirmed by Brewster angle and epifluorescence microscopy. PE with ethoxy phosphoester defects (Ethoxy-PPE) forms circular shape domains, whereas Methyl-PPE-co-decadiene with methyl phosphoester defects and two different methylene sequences between the defects exhibits a film-like morphology. The domains/films are examined by atomic force microscopy after transferring them to a solid support. The thickness of the domains/films is found in the range from ~ (2.4 to 3.2) nm depending on the transfer pressure. A necessity of chain tilt in the crystalline domains is also confirmed. Grazing incidence X-ray scattering measurements in LB films show a single Bragg reflection at a scattering vector qxy position of ~ 15.1 nm−1 known from crystalline PE samples.
机译:聚(乙烯)(PE)是一种常用的半结晶聚合物,其由于重复单元中的极性基团缺乏,不能形成Langmuir或Langmuir-Blodgett(LB)膜。可以使用PES与具有亲水基团布置在聚合物主链内的常规距离的PES的PES解决这个问题。随着无环二烯复分解(撞击)聚合,可获得一定间隔在一定间隔后精确添加极性基团的工具。在这项研究中,我们证明了使用常规磷酸盐基团的两种不同PE的朗马/ LB薄膜的形成,作为主链中的结晶缺陷。将聚合物从Langmuir槽的水表面涂抹在氯仿溶液和溶剂蒸发后,在等温条件下压缩期间记录表面压力。这些π-a等温物,表面压力π与平均面积为每重复单元a,在表面压力下显示平台区〜(6至8)mn / m的表面压力,归因于由Brewster确认的PE的结晶结构域的形成角度和渗流荧光显微镜。具有乙氧基磷酸酯缺陷(乙氧基-PPE)的PE形成圆形结构域,而甲基-PPE-共同二酮与甲基磷酸酯缺陷和两种不同的缺陷之间的亚甲基序列表现出膜状形态。在将它们转移到固体支持之后,通过原子力显微镜检查结构域/薄膜。根据转移压力,域/薄膜的厚度在〜(2.4至3.2)Nm的范围内。还证实了结晶结构域中的链倾斜的必要性。 LB膜中的放牧发病率X射线散射测量显示在结晶PE样品中已知的〜15.1nm-1的散射载体Qxy位置处的单个布拉格反射。

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