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首页> 外文期刊>Journal of Polymer Research >Structure and performance of poly (lactic acid)/amide ethylenediamine tetraacetic acid disodium salt intercalation layered double hydroxides nanocomposites
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Structure and performance of poly (lactic acid)/amide ethylenediamine tetraacetic acid disodium salt intercalation layered double hydroxides nanocomposites

机译:聚(乳酸)/酰胺乙二胺四乙酸二钠盐插入层双氢氧化物纳米复合材料的结构和性能

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摘要

Modified layered double hydroxides (E-LDHs) were successfully prepared by the intercalation of ethylenediamine tetraacetic acid disodium salt (EDTA). Then, amide EDTA intercalation layered double hydroxides (AE-LDHs) were synthesized using aniline. The structure characterization of AE-LDHs demonstrated that AE-LDHs was successfully amidified. To enhance the properties of poly (lactic acid) (PLA), PLA/AE-LDHs nanocomposites were prepared by using AE-LDHs as the nucleating agent. Mechanical properties, thermal stabilities and crystallization properties of PLA/AE-LDHs nanocomposites were investigated by thermogravimetric analysis (TG), differential scanning calorimetry (DSC), polarized optical microscopy (POM), and rheological behavior analysis. Results of mechanical properties and TG analysis showed that mechanical properties, thermal stabilities of PLA/AE-LDHs nanocomposites were improved significantly compared to pure PLA. Differential scanning calorimetry (DSC) demonstrated that AE-LDHs restricted the cold crystallization of PLA matrix and improved the crystallinity of PLA by 30.15%. POM analysis showed that AE-LDHs acted as an excellent nucleating agent, which greatly increased the crystallization rate of PLA. Compared with pure PLA, the maximum torque and apparent viscosity of PLA/AE-LDHs nanocomposites were improved by 46.21% and 85.86%, respectively, which proved that the AE-LDHs increased the rigidity of network structure of PLA matrix. In this work, an efficient and feasible nucleating agent for improving the crystallinity of PLA was presented through the amidation of LDHs.
机译:通过乙二胺四乙酸二钠盐(EDTA)的插层成功制备改性层状双氢氧化物(E-LDH)。然后,使用苯胺合成酰胺EDTA嵌入层状双氢氧化物(AE-LDH)。 AE-LDH的结构表征证明AE-LDHs成功酰胺化。为了增强聚(乳酸)(PLA)的性质,通过使用AE-LDH作为成核剂来制备PLA / AE-LDHS纳米复合材料。通过热重分析(Tg),差分扫描量热法(DSC),偏振光学显微镜(POM)和流变行为分析研究了PLA / AE-LDHS纳米复合材料的机械性能,热稳定性和结晶性能。机械性能和TG分析结果表明,与纯PLA相比,PLA / AE-LDHS纳米复合材料的热稳定性显着改善。差分扫描量热法(DSC)证明AE-LDHs限制PLA基质的冷结晶并改善PLA的结晶度,通过30.15%。 POM分析表明,AE-LDHS作用为优异的成核剂,大大增加了PLA的结晶速率。与纯PLA相比,PLA / AE-LDHS纳米复合材料的最大扭矩和表观粘度分别提高了46.21%和85.86%,证明AE-LDHS增加了PLA矩阵的网络结构的刚性。在这项工作中,通过LDH的酰胺化给出了用于改善PLA结晶度的有效和可行的成核剂。

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