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材料导报  2019, Vol. 33 Issue (6): 1042-1046    https://doi.org/10.11896/cldb.201906024
  高分子与聚合物基复合材料 |
缩聚法制备热固性聚乳酸及其力学性能和热稳定性研究
谢鹏飞, 陈勰, 丁峰, 张乃文, 李建波, 任杰
同济大学材料科学与工程学院,上海 201804
Study on Mechanical Properties and Thermal Stability of Thermoset Poly(Lactic Acid) Prepared by Polycondensation Method
XIE Pengfei, CHEN Xie, DING Feng, ZHANG Naiwen, LI Jianbo, REN Jie
College of Materials Science and Engineering, Tongji University, Shanghai 201804
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摘要 以L-乳酸为单体、季戊四醇为引发剂,采用缩聚法合成了短链四臂星形聚乳酸(4sPLA),随后经不饱和酸酐对其端基改性,合成了含不饱和端基的四臂星形聚乳酸预聚物(M4sPLA),最后通过自由基引发M4sPLA的固化反应制备热固性聚乳酸,重点研究了缩聚时间对预聚物和热固性聚乳酸产物的影响。结果表明:延长缩聚时间可明显提高羟基引发效率和星形聚乳酸的分子量,降低杂质含量,使其分子量分布更窄;随直接缩聚时间的延长,固化产物具有更高的交联密度,经20 h直接缩聚的固化产物具有最好的力学性能、热稳定性以及完善的微观结构。
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谢鹏飞
陈勰
丁峰
张乃文
李建波
任杰
关键词:  热固性聚乳酸  四臂星形聚乳酸(4sPLA)  缩聚  L-乳酸  季戊四醇  甲基丙烯酸酐  端基改性  聚合时间  热稳定性    
Abstract: This work presents the preparation of thermoset poly(lactic acid) (PLA) through polycondensation and cross-linking reactions. Firstly, four-armed star-shaped poly(lactic acid) (4sPLA) with short chains was synthesized by polycondensation using L-lactic acid as monomer and pentaerythritol as initiator, and was hydroxyl-terminated using methacrylic anhydride to obtain the unsaturated-group-terminated star-shaped oligomer precursor (M4sPLA) capable of cross-linking and solidification. Then, the thermoset PLA samples were obtained by a free-radical-initiated cross-linking reaction, and the effects of polycondensation duration on mechanical properties and thermal stability of the thermoset PLA product were studied. The results showed that the reaction initiation efficiency can be obviously enhanced by increasing the polycondensation duration, which lead to low inpurity content, high molecular weight and low polydispersity of 4sPLA. Moreover, the prolonged polycondensation duration is conducive to higher cross-linking density of the thermally cured PLA product. The most satisfactory mechanical properties, thermal stability and microstructure of the thermoset PLA could be achieved when the polycondensation reaction duration was 20 h.
Key words:  thermoset poly(lactic acid)    four-armed star-shaped poly(lactic acid) (4sPLA)    polycondensation    L-lactic acid    pentaerythritol    methacrylic anhydride    terminal group substitution    polymerization duration    thermal stability
               出版日期:  2019-03-25      发布日期:  2019-04-03
ZTFLH:  TQ317  
基金资助: 上海汽车工业科技发展基金会(1006);国家高技术研究发展计划(2013AA032202);国家自然科学基金(51203118)
作者简介:  谢鹏飞,2017年6月毕业于东华大学,获得高分子材料学士学位。李建波,同济大学材料科学与工程专业副教授,博士研究生导师,2010年11月获同济大学材料学工学博士学位。
引用本文:    
谢鹏飞, 陈勰, 丁峰, 张乃文, 李建波, 任杰. 缩聚法制备热固性聚乳酸及其力学性能和热稳定性研究[J]. 材料导报, 2019, 33(6): 1042-1046.
XIE Pengfei, CHEN Xie, DING Feng, ZHANG Naiwen, LI Jianbo, REN Jie. Study on Mechanical Properties and Thermal Stability of Thermoset Poly(Lactic Acid) Prepared by Polycondensation Method. Materials Reports, 2019, 33(6): 1042-1046.
链接本文:  
http://www.mater-rep.com/CN/10.11896/cldb.201906024  或          http://www.mater-rep.com/CN/Y2019/V33/I6/1042
1 Jie Ren. Biodegradable poly(lactic acid): synthesis, modification, processing and applications, Springer, Germany,2011.
2 Anders S, Mikael S. Progress in Polymer Science,2002,27(6),1123.
3 Ren J, Li J B, A series of new natural polymer materials—Polylactic acid, Chemical Industry Press, China,2014(in Chinese).
任杰,李建波. 天然高分子基新材料丛书——聚乳酸, 化学工业出版社,2014.
4 Zou H T, Yi C H, Wang L X, et al. Journal of Thermal Analysis and Calorimetry,2009,97(3),929.
5 Carrasco F, Pages P, Gamez-Perez J. Polymer Degradation and Stability,2010,95(12),2508.
6 Ahmad N, Alam M, Al-Otaibi, et al.Progress in Reaction Kinetics,2015,40(1),86.
7 Yin H Y, Wei X F, Bao R Y, et al. CrystEngComm,2015, 17(11), 2310.
8 Albano C, Rodríguez B, Karam A, et al. Polymers Bulletin,2012,68(7),1935.
9 Su Z Z, Guo W H, Liu Y J, et al. Polymers Bulletin,2009,62(5),629.
10 Zhang J, Sato H, Tsuji H, et al. Macromolecules,2005,38(5),1822.
11 Sakamoto Y, Tsuji H S.Macromolecular Chemistry and Physics,2013,214(7),776.
12 Brizzolara D, Cantow H J, Diederichs K.Macromolecules,1996,29(1),191.
13 Sun J R, Shao J, Huang S Y. Materials Letters,2012,89(15),169.
14 Chen X, Zhang N W, Gu S Y, et al. Journal of Reinforced Plastics and Composites,2014,33(10),953.
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