Fan Zuwei, Yu Yuanyuan, Cheng Xiaojie, Liu Rangtong
College of Fashion Technology, Zhongyuan University of Technology, Zhengzhou 451191, China.
Materials (Basel). 2022 Jan 30;15(3):1088. doi: 10.3390/ma15031088.
Aimed at improving the electromagnetic (EM) shielding and flame retardancy of cellulose materials, graphene (GE) nanoplates were introduced into cellulose matrix films by blending in1-allyl-3-methylimidazolium chloride. The structure and performance of the obtained composite films were investigated using scanning electron microscopy, X-ray diffraction, thermogravimetric (TG) analysis, EM shielding effectiveness (SE), and combustion tests. GE introduction formed and stacked laminated structures in the films after drying due to controlled shrinkage of the cellulose matrix. The lamination of GE nanoplates into the films was beneficial for providing EM shielding due to multiple internal reflection of EM radiation; furthermore, they also increased flame resistance based on the "labyrinth effect." The SE of these composite films increased gradually with increased GE content and reached 22.3 dB under an incident frequency of 1500 MHz. TG analysis indicated that these composite films possessed improved thermal stability due to GE addition. Reduced flammability was confirmed by their extended times to ignition or inability to be ignited, reduced heat release rates observed in cone calorimetry tests, and increased limiting oxygen index values. These films with improved EM shielding and flame retardancy could be considered potential candidates for multipurpose materials in various applications, such as electronics and radar evasion.
为了提高纤维素材料的电磁屏蔽和阻燃性能,通过在1-烯丙基-3-甲基咪唑氯化物中混合的方式将石墨烯(GE)纳米片引入纤维素基质薄膜中。使用扫描电子显微镜、X射线衍射、热重(TG)分析、电磁屏蔽效能(SE)和燃烧测试对所得复合薄膜的结构和性能进行了研究。由于纤维素基质的可控收缩,GE的引入在干燥后的薄膜中形成并堆叠了层状结构。GE纳米片层叠到薄膜中有利于通过电磁辐射的多次内部反射提供电磁屏蔽;此外,基于“迷宫效应”,它们还提高了阻燃性。这些复合薄膜的SE随着GE含量的增加而逐渐增加,在1500 MHz的入射频率下达到22.3 dB。TG分析表明,由于添加了GE,这些复合薄膜具有更高的热稳定性。通过延长着火时间或无法点燃、锥形量热法测试中观察到的热释放率降低以及极限氧指数值增加,证实了其可燃性降低。这些具有改进的电磁屏蔽和阻燃性能的薄膜可被视为电子和雷达规避等各种应用中多功能材料的潜在候选者。