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Preparation of transparent self-standing thin films made from acetylated euglenoid beta-1,3-glucans

机译:制备由乙酰化的类桉β-1,3-葡聚糖制成的透明自立薄膜

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摘要

The feasibility of using acetylparamylon to prepare self-standing optical films was investigated. Its thermal stability, represented by the glass transition temperature, and 5% weight loss temperature are equivalent to those of acetylcellulose. The mechanical properties (maximum stress, elongation at break, and elastic modulus) of acetylparamylon films prepared by solution casting were comparable to those of acetylcellulose films. The degrees of their transparency and birefringence were the same as those of the acetylcellulose film. These results, together with the finding that acetylparamylon with a higher degree of acetylation formed a thin film with fewer micrometer-sized defects and that acetylparamylon with a lower degree of acetylation formed a thin film with a nanometer-level flat surface, suggest that acetylparamylon is a feasible material for self-standing optical film. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了使用乙酰基对mylon制备自立式光学膜的可行性。由玻璃化转变温度和5%失重温度表示的热稳定性与乙酰纤维素相当。通过溶液流延制备的乙酰对mylon膜的机械性能(最大应力,断裂伸长率和弹性模量)与乙酰纤维素膜的机械性能相当。它们的透明度和双折射程度与乙酰纤维素膜的程度相同。这些结果,再加上发现乙酰化程度较高的乙酰对巴mylon形成了具有较少的微米级缺陷的薄膜,而乙酰化程度较低的乙酰对巴mylon则形成了具有纳米级平面的薄膜的发现,表明乙酰化paramylon是自立光学膜的可行材料。 (C)2015 Elsevier Ltd.保留所有权利。

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