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Structure and Dynamics of Biobased Polyester Nanocomposites

机译:生物化涤纶纳米复合材料的结构和动力学

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摘要

The structure and the dynamics of two bio-based polyester polyols are investigated in the bulk and close to surfaces in polymer/layered silicate nanocomposites. The morphology of the neat polymers as well as the structure of the nanohybrids are investigated with X-ray diffraction and their thermal properties are studied by differential scanning calorimetry. One of the investigated polyesters is amorphous, whereas the second one is a semicrystalline polymer with intriguing thermal behavior. Hybrids have been synthesized over a broad range of compositions and intercalated structures are always obtained. The thermal transitions in the nanocomposites are observed only when the polymers are in excess outside the completely filled galleries. The glass transition, whenever it can be resolved, appears insensitive to the presence of the inorganic material, whereas the way the crystallization takes place depends on the composition of the nanohybrid. Dielectric relaxation spectroscopy was utilized to study the polymer dynamics. It revealed multiple relaxation processes for the neat polymers both below and above their glass transition temperatures, whereas in the nanocomposites, similarities and differences are observed depending on the specific mode of the dynamic process.
机译:在体积中研究了两个生物基聚酯多元醇的结构和动力学,并靠近聚合物/层状硅酸盐纳米复合材料中的表面。用X射线衍射研究整个聚合物的形态以及纳米冬小化的结构,并通过差示扫描量热法研究其热性能。其中一个研究的聚酯是无定形的,而第二个是具有有趣的热行为的半结晶聚合物。已经在广泛的组合物中合成了杂交种,并且总是获得嵌入结构。仅当聚合物在完全填充的画廊外部超出时,才观察到纳米复合材料中的热转变。玻璃过渡,无论何时可以解决,对无机材料的存在看起来不敏感,而结晶发生的方式取决于纳米冬次的组成。利用介电弛豫光谱研究聚合物动力学。它揭示了在玻璃化转变温度以下和高于其玻璃化转变温度的纯聚合物的多个弛豫方法,而在纳米复合材料中,根据动态过程的特定模式观察相似性和差异。

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