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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Structure-property relationships of Thai silk-microcrystalline cellulose biocomposite materials fabricated from ionic liquid
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Structure-property relationships of Thai silk-microcrystalline cellulose biocomposite materials fabricated from ionic liquid

机译:离子液体制造的泰国丝微晶纤维素生物复合材料的结构 - 性质关系

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Biomaterials made from natural proteins and polysaccharides have become increasingly popular in the biomedical field due to their good biocompatibility and tunable biodegradability. However, the low miscibility of polysaccharides with proteins presents challenges in the creation of protein-polysaccharide composite materials. In this study, neat 1-ally1-3-methylimidazolium chloride (AMIMCI) ionic liquid was used to regenerate Thailand gold Bombyx mori silk and microcrystalline cellulose blended films. This solvent was found to not only effectively dissolve both natural polymers, but also preserve the structure and integrity of the polymers. A single glass transition temperature for each blend was found in DSC curves, indicating good miscibility between the Thai silk and cellulose molecules. The structural composition as well as the morphology and thermal stability of blend films were then determined using FTIR, SEM and TGA. It was found that by varying the ratio of Thai silk to cellulose, the thermal and physical properties of the material could be tuned. Blended films tended to be more thermally stable which could be due to the presence of hydrophobic hydrophobic or electrostatic interactions between the silk and cellulose. These studies offered a new pathway to understand the tunable properties of protein-polysaccharide composite biomaterials with controllable physical and biological properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于其良好的生物相容性和可调谐生物降解性,来自天然蛋白质和多糖制成的生物材料在生物医学领域越来越受欢迎。然而,具有蛋白质的多糖的低混溶性呈现蛋白质 - 多糖复合材料的挑战。在该研究中,使用纯1-烯丙基氯化甲基氯化钠(Amimci)离子液体来再生泰国金Bombyx Mori丝和微晶纤维素混合膜。发现该溶剂不仅有效地溶解了天然聚合物,还可以保持聚合物的结构和完整性。在DSC曲线中发现每个共混物的单个玻璃化转变温度,表明泰国丝和纤维素分子之间的良好混合性。然后使用FTIR,SEM和TGA测定结构组合物以及共混膜的形态和热稳定性。结果发现,通过改变泰国丝与纤维素的比例,可以调谐材料的热和物理性质。混合薄膜倾向于更热稳定,这可能是由于丝和纤维素之间存在疏水性的疏水性或静电相互作用。这些研究提供了一种新的途径,以了解具有可控物理和生物学性质的蛋白质 - 多糖复合生物材料的可调性能。 (c)2017年Elsevier B.V.保留所有权利。

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