首页> 外文期刊>Journal of Applied Polymer Science >Morphological, thermal, and mechanical properties of poly(epsilon-caprolactone)/poly(epsilon-caprolactone)-grafted-cellulose nanocrystals mats produced by electrospinning
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Morphological, thermal, and mechanical properties of poly(epsilon-caprolactone)/poly(epsilon-caprolactone)-grafted-cellulose nanocrystals mats produced by electrospinning

机译:静电纺丝制备的聚ε-己内酯/聚ε-己内酯接枝纤维素纳米晶垫的形貌,热学和力学性能

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Electrospun nanocomposites of poly(epsilon-caprolactone) (PCL) incorporated with PCL-grafted cellulose nanocrystals (PCL-g-CNC) were produced. PCL chains were grafted from cellulose nanocrystals (CNC) surface by ring-opening polymerization. Grafting was confirmed by infrared spectroscopy (FTIR) and thermogravimetric analyses (TGA). The resulting PCL-g-CNC were then incorporated into a PCL matrix at various loadings. Homogeneous nanofibers with average diameter decreasing with the addition of PCL-g-CNC were observed by scanning electron microscopy (SEM). PCL-g-CNC domains incorporated into the PCL matrix were visualized by transmission electron microscopy (TEM). Thermal and mechanical properties of the mats were analyzed by differential scanning calorimetry (DSC), TGA and dynamic mechanical analysis (DMA). The addition of PCL-g-CNC into the PCL matrix caused changes in the thermal behavior and crystallinity of the electrospun fibers. Significant improvements in Young's modulus and in strain at break with increasing PCL-g-CNC loadings were found. These results highlighted the great potential of cellulose nanocrystals as a reinforcement phase in electrospun PCL mats, which can be used as biomedical materials. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43445.
机译:制备了掺有PCL接枝的纤维素纳米晶体(PCL-g-CNC)的聚(ε-己内酯)(PCL)的电纺纳米复合材料。通过开环聚合从纤维素纳米晶体(CNC)表面接枝PCL链。通过红外光谱(FTIR)和热重分析(TGA)确认了接枝。然后将所得的PCL-g-CNC以各种负载掺入PCL基质中。通过扫描电子显微镜(SEM)观察到平均直径随加入PCL-g-CNC而减小的均质纳米纤维。通过透射电子显微镜(TEM)观察结合到PCL基质中的PCL-g-CNC结构域。通过差示扫描量热法(DSC),TGA和动态力学分析(DMA)分析了垫子的热和机械性能。将PCL-g-CNC添加到PCL基质中会导致电纺纤维的热行为和结晶度发生变化。发现随着PCL-g-CNC载荷的增加,杨氏模量和断裂应变得到了显着改善。这些结果突出了纤维素纳米晶体作为电纺PCL毡中的增强相的巨大潜力,该毡可用作生物医学材料。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43445。

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