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首页> 外文期刊>Macromolecular Research >Influence of a Low Content of PEO Segment on the Thermal, Surface and Morphological Properties of Triblock and Diblock PCL Copolymers
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Influence of a Low Content of PEO Segment on the Thermal, Surface and Morphological Properties of Triblock and Diblock PCL Copolymers

机译:低含量的PEO链段对Triblock和Diblock PCL共聚物的热,表面和形态学性能的影响

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摘要

Two series, one of triblock (PCL/PEO/PCL) and the other of diblock (PCL/PEO) copolymers were prepared by ring-opening polymerization of epsilon-caprolactone catalized with tin(II) octoate and by using dihydroxy or monohydroxy poly(ethylene oxide) as the macroinitiator. The PEO block length was fixed (M-n 1,000 g/mol) and the PCL block lengths (M-n 10,000-40,000 g/mol) were tailored by changing weight ratio of epsilon-CL/PEO. The copolymers' structure was confirmed by H-1 and quantitative C-13 NMR spectroscopy while their molecular weights were determined by GPC analysis. The thermal properties and the degree of crystallinity of the copolymers were investigated and compared by using DSC and WAXS. Both types of copolymers were semicrystalline with the orthorhombic PCL crystal lattice. The surface morphology of the copolymer films was investigated by using optical microscopy and AFM analysis, which confirmed the spherulitic lamellar structure with spherulites of different diameters. Data indicated that a low content of PEO segment had an influence on thermal degradation behavior, crystallinity and morphology of copolymers. Roughness of copolymer films was affected by the content of PEO and correlated with the spherulites' diameter. The small changes in water and moisture absorption properties of copolymers compared to homopolymer PCL were observed.
机译:通过用辛酸锡(II)催化的ε-己内酯开环聚合并使用二羟基或单羟基聚(S),制备三嵌段共聚物(PCL / PEO / PCL)和二嵌段共聚物(PCL / PEO)的两个系列。环氧乙烷)作为大分子引发剂。 PEO嵌段的长度是固定的(M-n 1,000 g / mol),PCL嵌段的长度(M-n 10,000-40,000 g / mol)是通过改变ε-CL/ PEO的重量比来定制的。共聚物的结构通过H-1和定量C-13 NMR光谱法确定,而其分子量通过GPC分析确定。用DSC和WAXS研究并比较了共聚物的热性能和结晶度。两种类型的共聚物都是具有正交PCL晶格的半结晶。通过光学显微镜和原子力显微镜分析研究了共聚物薄膜的表面形貌,证实了具有不同直径球晶的球状层状结构。数据表明,低含量的PEO链段对共聚物的热降解行为,结晶度和形态有影响。共聚物薄膜的粗糙度受PEO含量的影响,并与球晶的直径有关。观察到与均聚物PCL相比,共聚物在水和湿气吸收特性方面的微小变化。

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