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Multifunctional Ti3C2Tx MXene Composite Hydrogels with Strain Sensitivity toward Absorption-Dominated Electromagnetic- Interference Shielding

机译:具有应变敏感性的多功能Ti3C2Tx MxINE复合水凝液对吸收束缚电磁干扰屏蔽

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摘要

The fast development of terahertz technologies demands high-performance electromagnetic interference (EMI) shielding materials to create safe electromagnetic environments. Despite tremendous breakthroughs in achieving superb shielding efficiency (SE), conventional shielding materials have high reflectivity and cannot be re-edited or recycled once formed, resulting in detrimental secondary electromagnetic pollution and poor adaptability. Herein, a hydrogel-type shielding material incorporating MXene and poly(acrylic acid) is fabricated through a biomineralization-inspired assembly route. The composite hydrogel exhibits excellent stretchability and recyclability, favorable shape adaptability and adhesiveness, and fast self-healing capability, demonstrating great application flexibility and reliability. More interestingly, the shielding performance of the hydrogel shows absorption-dominated feature due to the combination of the porous structure, moderate conductivity, and internal water-rich environment. High EMI SE of 45.3 dB and broad effective absorption bandwidth (0.2-2.0 THz) with excellent refection loss of 23.2 dB can be simultaneously achieved in an extremely thin hydrogel (0.13 mm). Furthermore, such hydrogel demonstrates sensitive deformation responses and can be used as an on-skin sensor. This work provides not only an alternative strategy for designing next-generation EMI shielding material but also a highly efficient and convenient method for fabricating MXene composite on macroscopic scales.
机译:太赫兹技术的快速发展需要高性能的电磁干扰(EMI)屏蔽材料来创造安全的电磁环境。尽管在实现卓越的屏蔽效率(SE)方面取得了巨大突破,但传统的屏蔽材料具有高反射率,一旦形成就无法重新编辑或回收,导致有害的二次电磁污染和较差的适应性。在此,通过受生物矿化启发的组装路线制备了包含MXene和聚(丙烯酸)的水凝胶型屏蔽材料。该复合水凝胶具有良好的拉伸性和可回收性,良好的形状适应性和粘附性,以及快速的自愈合能力,显示出极大的应用灵活性和可靠性。更有趣的是,由于多孔结构、中等导电性和内部富水环境的结合,水凝胶的屏蔽性能显示出以吸收为主的特征。在极薄的水凝胶(0.13 mm)中,可以同时实现45.3 dB的高EMI SE和宽有效吸收带宽(0.2-2.0太赫兹),以及23.2 dB的优良反射损耗。此外,这种水凝胶显示出敏感的变形响应,可以用作皮肤上的传感器。这项工作不仅为设计下一代EMI屏蔽材料提供了一种替代策略,而且为在宏观尺度上制备MXene复合材料提供了一种高效便捷的方法。

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