- 吳林波 教授
- 浙江大學化工系聚合物工程研究所
- 網(wǎng)址: wulinbo.polymer.cn 訪問量:1509821
- MedSci 臨床研究教育培訓與學術(shù)服務(wù)平臺
- Philippe Dubois教授課題組,比利時蒙斯大學聚合物與復(fù)合材料實驗室
- 中國塑協(xié)降解塑料專業(yè)委員會
- 中國聚合物網(wǎng)
- 中國流變網(wǎng)
- 中國化學儀器網(wǎng)
- 化學化工論壇
- 通信地址:杭州市浙大路38號浙大玉泉校區(qū)第十教學大樓(石化大樓)4111室
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關(guān)鍵字:Bio-based polyester,Poly(ethylene 2,5-furandicarboxylate),Polymer nanocomposites,Crystallization,Polymer modification,Montmorillonite
論文來源:期刊
具體來源:European Polymer Journal 121, 109266, 2019 https://doi.org/10.1016/j.eurpolymj.2019.109266 https
發(fā)表時間:2019年
Poly(ethylene 2,5-furandicarboxylate) (PEF) is an emerging biobased polyester well-known for high gas barrier properties as well as high tensile modulus and strength, but PEF modification is still desired to improve its crystallization rate, toughness and even strength. In this study, PEF/Montmorillonite (MMT) nanocomposites were in-situ synthesized via melt polycondensation of dimethyl furandicarboxylate and ethylene glycol in the presence of a commercially available organically modified montmorillonite (OMMT), i.e., DK2, a montmorillonite clay modified with octadecyl hydroxyethyl dimethyl ammonium. The structure of nanocomposites was characterized by ATR-FTIR, 1H NMR, WAXD and TEM, and their thermal and mechanical properties were assessed with DSC, TGA and tensile test. The OMMT was grafted with PEF chains and therefore exfoliated, at least partially, in the PEF matrix with intrinsic viscosity over 0.7 dL/g. With respect to pristine PEF, the nanocomposites containing 2.5 wt% DK2 showed significantly improved melt crystallization, tensile modulus and strength.