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聚四氟乙烯原位纤维化和二苯甲酰己二酰肼协同作用对聚乳酸结晶和发泡行为的影响。

The synergistic effect of polytetrafluoroethylene in-situ fibrillation and dibenzoyl sebacate hydrazide on the crystallization and foaming behavior of poly (lactic acid).

机构信息

School of Chemistry and Materials Engineering, Beijing Technology and Business University, Beijing 100048, People's Republic of China.

School of Chemistry and Materials Engineering, Beijing Technology and Business University, Beijing 100048, People's Republic of China.

出版信息

Int J Biol Macromol. 2022 Nov 30;221:523-535. doi: 10.1016/j.ijbiomac.2022.09.032. Epub 2022 Sep 8.

Abstract

The fully degradable poly (lactic acid) foam with green environmental protection characteristics can alleviate the shortage of petroleum resources caused by the application of plastics. However, due to the inherent low melt strength and slow crystallization rate of linear PLA. It is difficult to obtain PLA microcellular foam with good morphology. In order to obtain PLA microcellular foam with ultra-high expansion ratio and small cell size, PTFE (polytetrafluoroethylene) nanofibers with excellent CO adsorption rate were introduced. Self-assembled nucleator TMC-300(dibenzoyl sebacate hydrazide) was also introduced to blend with PLA to obtain small-sized cells. The results show that the PTFE entanglement network as a self-assembled template can effectively improve the early crystallization nucleation efficiency and increase the crystallinity of branched PLA (CBPLA)/TMC by 7 %. The microcellular foam with PTFE content of 0.5 wt% (CBPLA/TMC/PTFE 0.5) was successfully prepared by physical foaming agent, which had the lowest cell size (8.7 μm) And high expansion ratio (1200 %).

摘要

具有绿色环保特性的完全可降解聚乳酸泡沫可以缓解塑料应用带来的石油资源短缺问题。然而,由于线性 PLA 固有的熔体强度低和结晶速率慢,很难获得具有良好形态的 PLA 微孔泡沫。为了获得具有超高膨胀比和小细胞尺寸的 PLA 微孔泡沫,引入了具有优异 CO 吸附率的 PTFE(聚四氟乙烯)纳米纤维。还引入了自组装成核剂 TMC-300(二苯甲酰基己二酰肼)与 PLA 共混,以获得小尺寸的细胞。结果表明,PTFE 缠结网络作为自组装模板可以有效提高早期结晶成核效率,使支化 PLA(CBPLA)/TMC 的结晶度提高 7%。通过物理发泡剂成功制备了 PTFE 含量为 0.5wt%(CBPLA/TMC/PTFE 0.5)的微孔泡沫,其具有最低的细胞尺寸(8.7μm)和最高的膨胀比(1200%)。

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