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聚乳酸基复合材料的形态、结晶及热行为:通过动态浸渍法实现氧化石墨烯/聚乙二醇杂化的奇妙效果

Morphology, Crystallization and Thermal Behaviors of PLA-Based Composites: Wonderful Effects of Hybrid GO/PEG via Dynamic Impregnating.

作者信息

Jia Shikui, Yu Demei, Zhu Yan, Wang Zhong, Chen Ligui, Fu Lei

机构信息

School of Materials Science and Engineering, Shaanxi University of Technology, Hanzhong 723000, China.

School of Science, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Polymers (Basel). 2017 Oct 19;9(10):528. doi: 10.3390/polym9100528.

Abstract

In this paper, a dynamic impregnating device, which can generate supersonic vibration with the vacuum-adsorbing field, was used to prepare the hybrid graphene oxide (GO)/polyethylene glycol (PEG). Interestingly, the hybrid GO/PEG under dynamic impregnating and/or internal mixing was introduced into poly-(lactic acid) (PLA) matrix via melting-compounding, respectively. On one hand, compared with the internal mixing, the hybrid GO/PEG with the different component ratio using dynamic impregnation had a better dispersed morphology in the PLA matrix. On the other hand, compared with the high molecular weight () of PEG, the hybrid GO/PEG with low of PEG had better an exfoliated morphology and significantly improved the heat distortion temperature (HDT) of the PLA matrix. Binding energies results indicate that low of PEG with GO has excellent compatibility. Dispersed morphologies of the hybrid GO/PEG show that the dynamic impregnating had stronger blending capacity than the internal mixing and obviously improved the exfoliated morphology of GO in the PLA. Crystallization behaviors indicate that the hybrid GO/PEG with the low of PEG based on dynamic impregnating effectively enhanced the crystallinity of PLA, and the cold crystallization character of PLA disappeared in the melting process. Moreover, the storage modulus and loss factor of the PLA-based composites were also investigated and their HDT was improved with the introduction of hybrid GO/PEG. Furthermore, a physical model for the dispersed morphology of the hybrid GO/PEG in the PLA matrix was established. Overall, the unique blending technique of hybrid GO/PEG via dynamic impregnating is an effective approach to enhance the property range of PLA and is suitable for many industrial applications.

摘要

在本文中,一种能够在真空吸附场中产生超音速振动的动态浸渍装置被用于制备氧化石墨烯(GO)/聚乙二醇(PEG)复合材料。有趣的是,通过动态浸渍和/或内部混合得到的GO/PEG复合材料分别通过熔融共混被引入聚乳酸(PLA)基体中。一方面,与内部混合相比,采用动态浸渍法制备的不同组分比例的GO/PEG复合材料在PLA基体中具有更好的分散形态。另一方面,与高分子量的PEG相比,低分子量的PEG与GO形成的复合材料具有更好的剥离形态,并且显著提高了PLA基体的热变形温度(HDT)。结合能结果表明,低分子量的PEG与GO具有优异的相容性。GO/PEG复合材料的分散形态表明,动态浸渍比内部混合具有更强的混合能力,并且明显改善了GO在PLA中的剥离形态。结晶行为表明,基于动态浸渍法制备的低分子量PEG与GO的复合材料有效地提高了PLA的结晶度,并且PLA在熔融过程中的冷结晶特性消失。此外,还研究了PLA基复合材料的储能模量和损耗因子,并且随着GO/PEG复合材料的引入其HDT得到了提高。此外,还建立了一个关于GO/PEG复合材料在PLA基体中分散形态的物理模型。总体而言,通过动态浸渍制备GO/PEG复合材料的独特混合技术是拓宽PLA性能范围的有效方法,适用于许多工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a76/6418665/47b7945b6bb4/polymers-09-00528-g001.jpg

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