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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Morphological development and enhancement of thermal, mechanical, and electronic properties of thermally exfoliated graphene oxide-filled biodegradable polylactide/poly(epsilon-caprolactone) blend composites
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Morphological development and enhancement of thermal, mechanical, and electronic properties of thermally exfoliated graphene oxide-filled biodegradable polylactide/poly(epsilon-caprolactone) blend composites

机译:热剥离石墨烯氧化物可生物降解聚氨酯/聚(ε-己内酯)混合物复合材料的热,机械和电子性能的形态学开发和增强

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Graphene nanosheets with relatively high surface areas and few layers were prepared by the thermal shocking of graphene oxide at 700 degrees C for the development of biodegradable polylactide/poly(e-caprolactone) (PLA/PCL) blend composites via a melt-blending method. A 60PLA/40PCL blend was selected as a model blend system and the effects of graphene oxide nanoplatelet incorporation (0.05-0.25 wt%) on the morphological development, thermal stability, tensile and rheological properties, and thermal and electrical conductivities were investigated. Morphological studies using transmission electron microscopy and optical microscopy indicated that the graphene oxide particles were located mainly in the minor PCL phase, where the interphase between PLA and PCL acted as a compatibilizer. In addition, characterization of the composites confirmed significant improvements in ductility, with an improved balance between the tensile modulus and strength; however, the composite containing 0.05 wt% graphene oxide exhibited a superior improvement in thermal stability and thermal conductivity compared to the other blend composites. This study therefore gives us an opportunity to design biodegradable polymer-based advanced composite materials with desirable properties by the careful selection of filler loadings, which further widens the application of PLA matrices. (C) 2018 Elsevier Ltd. All rights reserved.
机译:具有相对高的表面积和少数层石墨烯纳米片是由热氧化石墨烯的震惊在700摄氏度制备生物可降解的聚乳酸/聚(ε-己内酯)(PLA / PCL)共混复合材料通过熔融共混方法的发展。甲60PLA / 40PCL共混物被选作模型共混体系和氧化石墨烯纳米薄片掺入(0.05-0.25重量%)的形态发育,热稳定性,拉伸强度和流变学特性,以及热和电传导率进行了调查的影响。使用透射电子显微镜和光学显微镜的形态学研究表明,氧化石墨烯颗粒主要定位于次要PCL阶段,其中PLA和PCL之间的相间充当增容剂。此外,复合材料的表征证实了延展性显著改进,与拉伸模量和强度之间具有改进的平衡;然而,含有该复合材料0.05重量%的氧化石墨烯表现出热稳定性和热导率的良好的改进相比于其他共混物复合材料。因此,本研究为我们提供了通过填料填充量的仔细选择,这进一步扩大了PLA矩阵的应用来设计具有期望特性的可生物降解的聚合物基先进复合材料的机会。 (c)2018年elestvier有限公司保留所有权利。

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