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SFPC課題組電磁屏蔽高分子復合材料研究成果發表在Composites Part A上

Chaobo Liang#, Yuxuan Liu#, Yifeng Ruan, Hua Qiu*, Ping Song, Jie Kong, Haobin Zhang and Junwei Gu*. Multifunctional sponges with flexible motion sensing and outstanding thermal insulation for superior electromagnetic interference shielding. Composites Part A: Applied Science and Manufacturing, 2020, 139: 106143. 2019IF=6.444.(1區材料科學Top期刊)

(https://doi.org/10.1016/j.compositesa.2020.106143)

Abstract: Although electrically conductive polymer composites (ECPCs) are promising in the application of electromagnetic interference (EMI) shielding, how to endow the ECPCs multifunctionality is still a huge challenge. In this work, the novel polyurethane@polydopamine@silver nanoparticles (PU@PDA@Ag) sponges with excellent compressibility, flexible motion sensing, outstanding thermal insulation and superior EMI shielding properties were successfully fabricated by a facile bio-response method, which could be obtained by following two steps: (i) PDA was decorated on the surface of PU sponges by dopamine self-polymerization. (ii) Ag nanoparticles were in-situ grown on the surface of PU sponges by electroless plating. PU@PDA@Ag sponge had the maximum EMI shielding effectiveness (SE) of 84 dB, and the corresponding specific SE and absolute SE were 2625 dB cm3 g-1 and 5250 dB cm2 g-1, much higher than those of other shielding foams/sponges. Meanwhile, PU@PDA@Ag sponge possessed low thermal conductivity (52.72 mW/mK), excellent compression resilience and piezoresistive properties.

如何制造輕質、良好柔韌性、優異絕熱和電磁干擾(EMI)屏蔽性能的導電聚合物復合材料(ECPCs)是一項巨大的挑戰。本文中,我們通過簡單的生物響應法制備了一種超輕、出色可壓縮回彈、運動感知、優異絕熱和EMI屏蔽性能的聚氨酯@聚多巴胺@銀納米粒子(PU@PDA@Ag)海綿,其可通過兩步獲得:(ⅰ) 多巴胺自聚裝飾在PU海綿表面;(ⅱ) 利用PDA的活性位點,通過化學電鍍使Ag納米粒子原位生長在PU表面。PU@PDA@Ag海綿具有高達84 dB的EMI效能(SE)值,對應的比屏蔽效能(SSE)和絕對屏蔽效能(SSEt)分別為2631 dB cm3/g和5263 dB cm2/g,幾乎優于所有報道的泡沫/海綿的SSE和SSEt。此外,PU@PDA@Ag海綿同時具有超低的密度(0.0226~0.0320 g/cm3)和導熱系數(52.72~63.54 mW/mK),出色的壓縮回彈性以及壓阻特性。出色的綜合性能使PU@PDA@Ag海綿有望應用在輕質、柔性EMI屏蔽領域,如柔性電子設備、智能傳感器、航空航天工程以及軍事防御系統。

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