Improvement of the mechanical and shape memory properties in polylactide/polyethylene glycol blends by reactive graphene oxide

材料科学 聚乙二醇 聚氧化乙烯 石墨烯 聚合物 氧化物 复合材料 化学工程 纳米技术 工程类 冶金
作者
Yu Sheng Ding,Haotian Ma,Xin Liu,Shengxue Qin,Jie Liu,Guanhang Qu,Yaozong Bai,Lifen Zhao
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:253: 127346-127346 被引量:1
标识
DOI:10.1016/j.ijbiomac.2023.127346
摘要

The widespread application of biodegradable polylactide (PLA) is hindered by its brittleness. Polyethylene glycol (PEG) is commonly utilized as a plasticizer because of its favorable compatibility with PLA. However, the incorporation of PEG considerably diminishes the tensile strength of PLA. To address this issue, reactive isocyanate-modified graphene oxide (mGO) was synthesized and used as an enhancer in PLA/PEG blends. By virtue of the reaction between the isocyanate group in mGO and the terminal hydroxyl groups of PLA and PEG, graphene-based polyurethane (PU) in-situ formed and enhanced the interface between GO and the matrix. Consequently, the PLA/PEG/mGO composites exhibit simultaneously improved tensile and impact strengths, achieving an increase of 20.6% and 29.4%, respectively, compared to PLA/PEG blends. Moreover, the in situ formed PU reduces the relaxation time of the molecule motion and improved the entanglement density, thereby improving the shape-memory recovery rate and final recovery degree of the composites. This work provides a facile method to simultaneously improve the dispersion of GO and enhance its interface with polymer, thereby supplying well comprehensive properties of PLA and extending the applications of biodegradable polymers.
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