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Nanocellulose‐MXene Biomimetic Aerogels with Orientation‐Tunable Electromagnetic Interference Shielding Performance

机译:具有定向可调电磁干扰屏蔽性能的纳米纤维素 - 乳胶生物仿真气凝胶

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摘要

Designing lightweight nanostructured aerogels for high‐performance electromagnetic interference (EMI) shielding is crucial yet challenging. Ultrathin cellulose nanofibrils (CNFs) are employed for assisting in building ultralow‐density, robust, and highly flexible transition metal carbides and nitrides (MXenes) aerogels with oriented biomimetic cell walls. A significant influence of the angles between oriented cell walls and the incident EM wave electric field direction on the EMI shielding performance is revealed, providing an intriguing microstructure design strategy. MXene “bricks” bonded by CNF “mortars” of the nacre‐like cell walls induce high mechanical strength, electrical conductivity, and interfacial polarization, yielding the resultant MXene/CNF aerogels an ultrahigh EMI shielding performance. The EMI shielding effectiveness (SE) of the aerogels reaches 74.6 or 35.5 dB at a density of merely 8.0 or 1.5 mg cm , respectively. The normalized surface specific SE is up to 189 400 dB cm  g , significantly exceeding that of other EMI shielding materials reported so far.
机译:设计轻质纳米结构用于高性能电磁干扰(EMI)屏蔽至关重要但具有挑战性。用于辅助用取向的仿生细胞壁建立超声密度,鲁棒和高度柔软的过渡金属碳化物和氮化物(MxENES)气凝胶的超大纤维素纳米纤维(CNFS)。揭示了在EMI屏蔽性能上的取向细胞壁和入射EM波电场方向之间的角度的显着影响,提供了一种有趣的微结构设计策略。由CNF“砂浆”粘接的丁烯“砖”的丁烯状细胞壁粘接,诱导高机械强度,导电性和界面极化,得到所得MXENE / CNF气凝胶的超高EMI屏蔽性能。 Aerogels的EMI屏蔽效果(SE)分别仅为8.0或1.5mg cm的密度达到74.6或35.5dB。归一化表面特异性SE高达189 400dB CM G,显着超出到目前为止报告的其他EMI屏蔽材料。

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