首页> 外文期刊>Journal of Macromolecular Science. Physics >Miscibility, Crystallization, and Morphology of the Double-Crystalline Blends of Insulating Polyethylene and Semiconducting Poly(3-Butylthiophene)
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Miscibility, Crystallization, and Morphology of the Double-Crystalline Blends of Insulating Polyethylene and Semiconducting Poly(3-Butylthiophene)

机译:绝缘聚乙烯和半导体聚(3-丁基噻吩)的双结晶共混物的混溶性,结晶性和形态

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摘要

A series of crystalline semiconducting poly(3-butylthiophene) (P3BT)/crystalline insulating polyethylene (PE) blends were prepared and the miscibility, crystallization, and structure/morphology were investigated. Even though phase separation was observed by transmission electron microscopy (TEM) and small-angle X-ray scattering (SAXS), several pieces of evidence indicated that limited miscibility should be present in PE/P3BT blends: small changes in both T_m and crystallinity of PE phase and a small portion of PE being dissolved in P3BT. The study of PE isothermal crystallization kinetics revealed that the introduction of P3BT significantly influenced the nucleation mechanism and growth geometry, i.e., PEwas transformed from three-dimensional (3D) spherulitic to two-dimensional (2D) disc crystals. A striking reduction of nucleation density and an obvious ringed morphology of PE spherulites (2D) in PEIP3BT blends were also observed by polarized optical microscopy; it is proposed that the limited miscibility between PE and crystalline P3BT favors the formation of ringed PE spherulite in the blends. Additionally, preferred orientation of PE lamellae, with their b-axis largely constrained to the thin film plane, was observed by X-ray diffraction in PE/P3BT blend films. It is evidenced that the PE orientation was due to the b-axis being the crystal growth direction, which can only be in film plane.
机译:制备了一系列的结晶半导体聚(3-丁基噻吩)(P3BT)/绝缘聚乙烯(PE)共混物,并研究了相溶性,结晶性和结构/形态。即使通过透射电子显微镜(TEM)和小角X射线散射(SAXS)观察到相分离,也有一些证据表明,PE / P3BT共混物中应存在有限的混溶性:T_m和结晶度的微小变化PE相和一小部分PE溶解在P3BT中。对PE等温结晶动力学的研究表明,P3BT的引入显着影响成核机理和生长几何形状,即PE已从三维(3D)球晶转变为二维(2D)盘状晶体。偏振光学显微镜观察到,PEIP3BT共混物中PE球晶(2D)的成核密度显着降低,并呈现出明显的环状形态。有人提出,PE与结晶P3BT之间的有限混溶性有利于在共混物中形成环状PE球晶。另外,通过X射线衍射在PE / P3BT共混膜中观察到了PE薄片的优选取向,其b轴很大程度上限制在薄膜平面上。证明了PE取向是由于b轴是晶体生长方向,其只能在膜平面内。

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