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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Multilayer structured PANI/MXene/CF fabric for electromagnetic interference shielding constructed by layer-by-layer strategy
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Multilayer structured PANI/MXene/CF fabric for electromagnetic interference shielding constructed by layer-by-layer strategy

机译:多层结构PANI / MXEN / CF织物,用于通过层逐策略构建的电磁干扰屏蔽

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摘要

Electromagnetic interference (EMI) shielding materials have been intensively investigated by virtue of the wide attention of electronic devices, but the current research still meets great challenge, especially those prepared by textiles. Herein, a lightweight, wearable and durable fabric with exceptional EMI shielding performance and Joule heating property was fabricated based on the layer-by-layer (L-b-L) assembly approach involving 2D transition metal carbides/nitrides (MXenes) sheets and polyaniline (PANI) polymer alternatively assembled on the carbon fiber (CF) fabric through the strong interfacial interactions between them. The results indicated that the resultant PANI/MXene/CF fabric with only 0.55 mm-thickness by five-cycleL-b-L assembly possessed a high EMI shielding effectiveness (26.0 dB), favorable specific EMI SE (135.5 dB.cm(3)/g) and electrical conductivity (24.57 S/m). In addition, the produced fabrics also exhibited excellent voltage-driven Joule heating, satisfactory air permeability, and performance stability. One of the major advantages of our work is to achieve novel functionalities while retaining the flexibility, air permeability and even washability of textile substrates, the other is the superior EMI shielding performance with an absorption-dominated shielding mechanism, which can effectively decrease secondary electromagnetic wave pollution when used in the practical application.
机译:通过电子设备的广泛关注,电磁干扰(EMI)屏蔽材料已经密集地调查,但目前的研究仍然满足巨大的挑战,尤其是由纺织品制备的挑战。本文,基于逐层(LBL)组装方法制造具有特殊EMI屏蔽性能和焦耳加热性的轻质,可穿戴和耐用的织物,涉及2D过渡金属碳化物/氮化物(MXENES)片和聚苯胺(PANI)聚合物或者通过它们之间的强界面相互作用组装在碳纤维(CF)织物上。结果表明,由5-Cyclel-BL组件具有0.55毫米厚度的所得PANI / MXENE / CF织物具有高EMI屏蔽效果(26.0dB),特定特定的EMI SE(135.5 dB.cm(3)/ g )和电导率(24.57 s / m)。此外,所生产的织物还表现出优异的电压驱动焦耳加热,令人满意的透气性和性能稳定性。我们作品的主要优势之一是实现新颖的功能,同时保持纺织基板的灵活性,透气性甚至可清洗性,另一个是具有吸收主导的屏蔽机构的优越的EMI屏蔽性能,可以有效地降低二次电磁波在实际应用中使用时的污染。

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