碳纳米管桥接垂直氧化锌阵列的致密导电网络增强碳纤维/聚合物复合材料的电磁干扰屏蔽、力学及热学性能

黄心萌 张浩然 刘梦欣 缪莹 余珍稀 吴奇 潘蕾

引用本文: 黄心萌, 张浩然, 刘梦欣, 缪莹, 余珍稀, 吴奇, 潘蕾. 碳纳米管桥接垂直氧化锌阵列的致密导电网络增强碳纤维/聚合物复合材料的电磁干扰屏蔽、力学及热学性能[J]. 物理化学学报, 2026, 42(10): 100293. doi: 10.1016/j.actphy.2026.100293 shu
Citation:  Xinmeng Huang,  Haoran Zhang,  Mengxin Liu,  Ying Miao,  Zhenxi Yu,  Qi Wu,  Lei Pan. A densified conductive network of carbon nanotube-bridged vertical ZnO arrays for enhanced electromagnetic interference shielding, mechanical, and thermal properties of carbon fiber/polymer composites[J]. Acta Physico-Chimica Sinica, 2026, 42(10): 100293. doi: 10.1016/j.actphy.2026.100293 shu

碳纳米管桥接垂直氧化锌阵列的致密导电网络增强碳纤维/聚合物复合材料的电磁干扰屏蔽、力学及热学性能

    通讯作者: 张浩然,E-mail:haoranzhang@nuaa.edu.cn; 潘蕾,E-mail:bettypan@nuaa.edu.cn
  • 基金项目:

    作者衷心感谢国家自然科学基金(52175329和52203140)、江苏省科协青年科技人才托举工程(JSTJ-2024-048)的资助,以及南京航空航天大学显微分析中心提供的实验设施支持。

摘要: 为满足先进电子器件对电磁干扰屏蔽与高效热管理集成化日益增长的需求,本研究通过仿生层级界面设计,开发了一种多功能碳纤维增强聚合物基复合材料(CFRP)。采用多级界面工程策略:首先,通过聚多巴胺活化改善界面粘附;其次,原位生长垂直排列的氧化锌纳米棒阵列,提供机械互锁、介电损耗及径向热传导路径;最后,通过片状碳纳米管网络桥接相邻纤维,形成致密、连续的导电框架。这种有机-无机“线-面”耦合结构实现了显著的多功能增强效果:复合材料在X波段的电磁干扰屏蔽效能达到30.8 dB,面外导热系数达0.71 W m-1 K-1,力学性能亦有显著提升——层间剪切强度与弯曲强度分别提高了57.4%和84.3%。此外,复合材料还展现出高效焦耳热效应与光热响应特性。本工作提出了一种可扩展的多级界面策略,实现了结构、热学与电磁功能的协同集成,为电磁干扰敏感领域中下一代结构材料的设计提供了可行的技术路径。

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