首页> 外文期刊>Polymers for advanced technologies >Preparation and characterization of phosphorylated graphene oxide grafted with poly(L-lactide) and its effect on the crystallization, rheological behavior, and performance of poly (lactic acid)
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Preparation and characterization of phosphorylated graphene oxide grafted with poly(L-lactide) and its effect on the crystallization, rheological behavior, and performance of poly (lactic acid)

机译:用聚(L-丙交酯)接枝的磷酸化石墨烯氧化物的制备与表征及其对聚(乳酸)的结晶,流变行为和性能的影响

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摘要

Phosphorylated graphene oxide (PGO) was prepared by using phosphoric acid as functional reagent, and PGO was grafted with poly(L-lactide) (PGO-PLLA) by ring-opening polymerization of L-lactide as monomer under nano-ZnO catalyst. The results of the orthogonal analysis showed the optimum reaction conditions to be as follows: the reaction temperature of 170 degrees C, reaction time of 14 hours, the mass ratio of PGO of 10 wt%, and the mass of nano-ZnO of 1 wt%. PGO-PLLA was characterized by fourier transform infrared spectroscopy, gel permeation chromatography, and X-ray photoelectron spectroscopy, which demonstrated that the PLLA molecular chains were successfully grafted onto the surface of PGO. Poly (lactic acid)/PGO-PLLA nanocomposites (PLA/PGO-PLLA) were prepared by melt intercalation. Mechanical test and fracture scanning electron microscopy showed that PGO-PLLA (0.3 wt%) improved impact strength of PLA by 52.19%, which resulted in ductile fractures surface of PLA/PGO-PLLA. Microcalorimetry and thermal degradation kinetics proved that PGO-PLLA improved the thermal stability of PLA. Polarized optical microscopy and differential scanning calorimetry confirmed that PGO-PLLA increased crystallization rate and spherulite kernel density of PLA, and crystallinity of PLA/PGO-PLLA reached to 22.05%. Rheological behavior proved that PGO-PLLA increased the self-lubricity of PLA. Enzymatic degradation results illustrated that PGO-PLLA had some inhibition for the biodegradability of PLA based nanocomposites.
机译:通过使用磷酸作为官能试剂制备磷酸化的石墨烯(PGO),通过在纳米 - ZnO催化剂下作为单体,用L-丙交酯的开环聚合用聚(L-丙交酯)(PGO-PLLA)接枝PGO。正交分析的结果表明,最佳反应条件如下:170℃的反应温度,反应时间为14小时,PGO的质量比为10wt%,纳米ZnO的质量为1 wt %。 PGO-PLLA的特征在于傅里叶变换红外光谱,凝胶渗透色谱和X射线光电子能谱,其证明PLLA分子链成功接枝到PGO的表面上。通过熔体插入制备聚(乳酸)/ pgo-PLLA纳米复合材料(PLA / PGO-PLLA)。机械测试和裂缝扫描电子显微镜显示PGO-PLLA(0.3wt%)改善PLA的冲击强度52.19%,导致PLA / PGO-PLLA的延性裂缝表面。微量离核和热降解动力学证明PGO-PLLA改善了PLA的热稳定性。偏振光学显微镜和差示扫描量热法证实,PGO-PLLA增加了PLA的结晶速率和球晶核密度,PLA / PGO-PLLA的结晶度达到22.05%。流变行为证明,PGO-PLLA增加了PLA的自润滑性。酶促降解结果表明,PGO-PLLA对基于PLA的纳米复合材料的生物降解性具有一些抑制。

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