Department of Materials Science and Engineering, College of Materials, Xiamen University, Xiamen 361005, China.
Department of Materials Science and Engineering, College of Materials, Xiamen University, Xiamen 361005, China.
Carbohydr Polym. 2018 Dec 1;201:367-373. doi: 10.1016/j.carbpol.2018.08.085. Epub 2018 Aug 22.
We here report an inexpensive active filler of surface-modified microcrystalline cellulose (MCC) particle for reinforcement of polymer material. A commercial MCC powder with particle size of about 50 μm was mixed with urea and was then irradiated under microwave for the modification. The obtained urea-modified MCC (u-MCC) was able to be dispersed in a chitosan solution without precipitation for over 48 h, which provided a time window for its processing. After the mixture slurry was cast onto glass substrate and then coagulated in a NaOH aqueous solution, a full natural polymer composite film has been prepared. The mechanical properties of the obtained composite films have been carefully measured and discussed. Our results indicate that the mechanical properties reach the highest when the urea-modified MCC is 7 wt% in the composite film: the tensile strength, the breaking elongation, the Young's modulus and the fracture energy are respectively about 2.0, 2.1, 2.4 and 6.0 times those of the pure chitosan film. The reinforcement of the composite material with the u-MCC particles was studied through scanning electron microscopy, Fourier transform infrared spectroscopy and X-ray diffraction analyses, and has been attributed to the strong interaction between the surface-modified MCC particles and the neighboring chitosan chains in the film matrix. Moreover, the water vapor permeability and the transparency of the composite films have been determined to evaluate the potential applications such as gas impervious material and packaging material.
我们在此报告了一种廉价的表面改性微晶纤维素(MCC)颗粒活性填料,用于增强聚合物材料。将粒径约为 50μm 的商业 MCC 粉末与尿素混合,然后在微波下辐照进行改性。所得的尿素改性 MCC(u-MCC)能够在壳聚糖溶液中分散而无沉淀超过 48 小时,这为其加工提供了时间窗口。将混合物浆料浇铸到玻璃基板上,然后在 NaOH 水溶液中凝固,即可制备出全天然聚合物复合膜。仔细测量和讨论了所得复合膜的力学性能。我们的结果表明,当复合膜中尿素改性 MCC 的含量为 7wt%时,力学性能达到最高:拉伸强度、断裂伸长率、杨氏模量和断裂能分别约为纯壳聚糖膜的 2.0、2.1、2.4 和 6.0 倍。通过扫描电子显微镜、傅里叶变换红外光谱和 X 射线衍射分析研究了 u-MCC 颗粒增强复合材料的性能,并归因于表面改性 MCC 颗粒与膜基质中相邻壳聚糖链之间的强相互作用。此外,还测定了复合膜的水蒸气透过率和透光率,以评估其作为气密材料和包装材料等潜在应用。