Lightweight Dual-Functional Segregated Nanocomposite Foams for Integrated Infrared Stealth and Absorption-Dominant Electromagnetic Interference Shielding

材料科学 纳米复合材料 电磁屏蔽 吸收(声学) 电磁干扰 红外线的 复合材料 电磁干扰 光电子学 光学 电信 计算机科学 物理
作者
Zhonglei Ma,Ruochu Jiang,Jiayao Jing,Songlei Kang,Li Ma,Kefan Zhang,Junxian Li,Yu Zhang,Jianbin Qin,Shuhuan Yun,Guangcheng Zhang
出处
期刊:Nano-micro Letters [Springer Science+Business Media]
卷期号:16 (1): 223-223 被引量:91
标识
DOI:10.1007/s40820-024-01450-0
摘要

Abstract Lightweight infrared stealth and absorption-dominant electromagnetic interference (EMI) shielding materials are highly desirable in areas of aerospace, weapons, military and wearable electronics. Herein, lightweight and high-efficiency dual-functional segregated nanocomposite foams with microcellular structures are developed for integrated infrared stealth and absorption-dominant EMI shielding via the efficient and scalable supercritical CO 2 (SC-CO 2 ) foaming combined with hydrogen bonding assembly and compression molding strategy. The obtained lightweight segregated nanocomposite foams exhibit superior infrared stealth performances benefitting from the synergistic effect of highly effective thermal insulation and low infrared emissivity, and outstanding absorption-dominant EMI shielding performances attributed to the synchronous construction of microcellular structures and segregated structures. Particularly, the segregated nanocomposite foams present a large radiation temperature reduction of 70.2 °C at the object temperature of 100 °C, and a significantly improved EM wave absorptivity/reflectivity ( A / R ) ratio of 2.15 at an ultralow Ti 3 C 2 T x content of 1.7 vol%. Moreover, the segregated nanocomposite foams exhibit outstanding working reliability and stability upon dynamic compression cycles. The results demonstrate that the lightweight and high-efficiency dual-functional segregated nanocomposite foams have excellent potentials for infrared stealth and absorption-dominant EMI shielding applications in aerospace, weapons, military and wearable electronics.
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