高等学校化学学报 ›› 2018, Vol. 39 ›› Issue (12): 2797.doi: 10.7503/cjcu20180293

• 高分子化学 • 上一篇    下一篇

“滑轮环”拓扑结构增韧聚乳酸及其形状记忆性能和机理探究

吴瑞清1,2, 来婧娟1,2, 潘毅1, 邓瑾妮1(), 郑朝晖1, 丁小斌1   

  1. 1. 中国科学院成都有机化学研究所, 成都 610041
    2. 中国科学院大学, 北京 100039
  • 收稿日期:2018-04-13 出版日期:2018-11-15 发布日期:2018-11-15
  • 作者简介:

    联系人简介: 邓瑾妮, 女, 博士, 副研究员, 主要从事智能高分子的研究. E-mail: dengjinniddd@163.com

  • 基金资助:
    国家自然科学基金(批准号: 51303179, 51173185)资助.

Toughing Polylactide with Topological Slide-ring Structure and Its Shape Memory Effect and Mechanism

WU Ruiqing1,2, LAI Jingjuan1,2, PAN Yi1, DENG Jinni1,*(), ZHENG Zhaohui1, DING Xiaobin1   

  1. 1. Chengdu Institute of Organic Chemistry, Chinese Academy of Sciences, Chengdu 610041, China
    2. University of Chinese Academy of Sciences, Beijing 100039, China
  • Received:2018-04-13 Online:2018-11-15 Published:2018-11-15
  • Contact: DENG Jinni E-mail:dengjinniddd@163.com
  • Supported by:
    † Supported by the National Natural Science Foundation of China(Nos.51303179, 51173185).

摘要:

通过羟丙基化改性聚轮烷(HPPR)引发L-丙交酯(LLA)开环聚合, 将具有机械互锁特性的“滑轮环”拓扑结构引入到聚乳酸体系中, 制备了高韧度的“滑轮环”聚乳酸基聚氨酯高分子体系(SR-PLAU), 并将其与化学交联的聚乳酸基聚氨酯体系(CC-PLAU), 以及聚乳酸/HPPR原位化学共混体系(PLA/HPPR)进行对比研究. 结果表明“滑轮环”拓扑结构的引入有效地提高了聚乳酸基材料的拉伸性能, 杨氏模量大幅度下降, 当“滑轮环”拓扑结构含量为1%(摩尔分数)时, 材料的断裂伸长率提高了10倍; “滑轮环”拓扑结构的引入赋予材料优异的形状记忆性能, 形状固定率和形状回复率都达到了90%以上. 提出了可能的形状记忆机理, 并利用材料的应力松弛特性对形状记忆机理进行了分析验证. 为材料的增韧改性和新性能研究提供新的理论和思路.

关键词: "滑轮环"拓扑结构, 聚乳酸, 增韧, 原位化学增容共混, 形状记忆性能

Abstract:

To toughen brittle poly(L-lactic acid), the topological slide-ring architecture was introduced by ring opening polymerization of L-lactic acid initiated by hydroxypropyl modified α-CD-based polyrotaxane(HPPR). The thermal properties, mechanical properties, dynamic mechanical properties and shape memory performance of slide-ring polylactic acid based polyurethane(SR-PLAU) and other all samples were investigated. The results show that, the embedding of the slide-ring structure not noly greatly improves the strain at break of polylactic acid, and significantly improves the mechanical properties, but also enables the material good shape memory performance, compared to CC-PLAU and PLA/HPPR. The shape memory mechanism of SR-PLAU was proposed and demonstrated by the stress relaxation characteristics of the materials.

Key words: Topological slide-ring, Polylactide, Toughen, In-situ reactive compatibilization, Shape memory effect

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