首页> 外文期刊>ACS applied materials & interfaces >Metal-Level Robust, Folding Endurance, and Highly Temperature-Stable MXene-Based Film with Engineered Aramid Nanofiber for Extreme-Condition Electromagnetic Interference Shielding Applications
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Metal-Level Robust, Folding Endurance, and Highly Temperature-Stable MXene-Based Film with Engineered Aramid Nanofiber for Extreme-Condition Electromagnetic Interference Shielding Applications

机译:金属水平鲁棒,折叠耐久性,高度温度稳定的MXENE基薄膜,具有用于极端条件的电磁干扰屏蔽应用的工程芳族纳米纤维

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摘要

Polymer-based electromagnetic interference (EMI) shielding materials possess many irreplaceable advantages than metals, such as superior flexibility, easy processing, and low density. However, impeded by their limited mechanical properties, inferior temperature resistance and unsatisfactory electrical conductivity, it is still challenging to extend their shielding applications under some extreme conditions, i.e., <-50 or >200 degrees C. Herein, we report an ultrathin, highly robust, superflexible, and temperature-stable film via engineering a worm-like aramid nanofiber (ANF) into the rod-like microscopic configuration, followed with self-assembly with Ti3C2Tx (MXene) into a hierarchical brick-and-mortar architecture. 'With stiff and symmetric aromatic rings fully straightened and well packed into a crystalline form in the backbone, this rod-like ANF enables an augmented network with effective energy dissipation, resulting in the metal-like mechanical properties, i.e., unprecedented tensile strength (300.5 MPa), high Young's modulus (13.6 GPa), and excellent folding endurance (>10 000 times). More significantly, this MXene/ANF composite film with outstanding specific EMI shielding effectiveness (8814.5 dB cm(2) g(-1)) and flame retardancy performs a broad range of operations in the temperature range from -100 degrees C (355 MPa) to 300 degrees C (136 MPa), in which >99% electromagnetic waves could be eliminated; this promises its potential EMI shielding applications even in some extreme conditions.
机译:基于聚合物的电磁干扰(EMI)屏蔽材料具有比金属的许多不可替代的优点,例如卓越的柔韧性,易于加工和低密度。然而,由于其有限的机械性能,较差的耐温性和不令人满意的导电性而阻碍,在一些极端条件下延长屏蔽应用仍然具有挑战性,即在此报告超薄,高度报告鲁棒,超细和温度稳定的薄膜通过将蜗杆样芳族纳米纤维(ANF)工程到棒状微观构型中,然后用Ti3C2Tx(MXENE)的自组装成分级砖和砂浆结构。 '具有坚硬且对称的芳环在骨架中完全矫正并堆叠成结晶形式,该棒状ANF使增强网络具有有效的能量耗散,导致金属状的机械性能,即前所未有的拉伸强度(300.5 MPA),高杨氏模量(13.6 GPA),优异的折叠耐久性(> 10 000次)。更重要的是,这种具有突出特异性EMI屏蔽效能的MXENE / ANF复合膜(8814.5dB(2)G(2)G(2)G(2)G(-1))和阻燃性在-100摄氏度(355MPa)的温度范围内进行广泛的操作。到300摄氏度(136MPa),其中可以消除> 99%的电磁波;这使得其潜在的EMI屏蔽应用即使在某些极端条件下也是如此。

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