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首页> 外文期刊>Journal of Materials Research and Technology >A simple strategy in enhancing moisture and thermal resistance and tensile properties of disintegrated bacterial cellulose nanopaper
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A simple strategy in enhancing moisture and thermal resistance and tensile properties of disintegrated bacterial cellulose nanopaper

机译:一种简单的策略,提高分解细菌纤维素纳米膜的水分和耐热性和拉伸性能

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Cellulose-based nanopaper with high moisture and thermal resistance and high tensile properties has many applications in the food packaging industry, electronics, and biosensors. The objective of the present work is to produce and characterize the disintegrated bacterial cellulose-based nanopaper film and its ZnO bionanocomposite prepared without and with compression. Addition of ZnO nanoparticles into nanopaper and compression improved the tensile and thermal properties and moisture resistance of the bionanocomposite. Compressed nanopaper film with 1.2?wt% ZnO had the highest tensile strength (TS) of 94.2?MPa and tensile modulus (TM) of 10.1?GPa. These TS and TM values were 109% and 172% higher than those of non-compressed film due to an increase in the crystal structure. Surprisingly this bionanocomposite also demonstrates higher elongation at break in comparison to the nanopaper film. All samples show good rollability and bendability. Compressed bionanocomposite had higher moisture resistance than non-compressed one. This work promotes an environmentally friendly bionanocomposite film which has good potential for food packaging applications.
机译:具有高水分和热性和高拉伸性能的基于纤维素的纳米件在食品包装行业,电子和生物传感器中具有许多应用。本作作品的目的是生产和表征典型的基于细菌纤维素的纳米玻璃膜及其制备的ZnO二酮复合物,而没有压缩。将ZnO纳米颗粒加入纳米玻璃并压缩改善了脱硫复合材料的拉伸和热性能和防潮性。压缩纳米膜膜,具有1.2·wt%ZnO的最高拉伸强度(Ts)为94.2〜β和拉伸模量(Tm),为10.1μl≤GPA。由于晶体结构的增加,这些TS和Tm值比非压缩膜的值高109%和172%。令人惊讶的是,与纳米波膜膜相比,这种均质化合物也在突破时伸长率。所有样品都显示出良好的可卷曲性和弯曲性。压缩的脱硫复合材料具有比非压缩的耐湿性更高。这项工作促进了一种环保的脱硫膜,具有良好的食品包装应用潜力。

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