State Key Laboratory of Organic-Inorganic Composites, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
School of Materials Science and Engineering, Henan Polytechnic University, Jiaozuo, 454003, China.
Adv Mater. 2017 Oct;29(38). doi: 10.1002/adma.201702367. Epub 2017 Aug 11.
Ultrathin, lightweight, and flexible electromagnetic-interference (EMI) shielding materials are urgently required to manage increasingly serious radiation pollution. 2D transition-metal carbides (MXenes) are considered promising alternatives to graphene for providing excellent EMI-shielding performance due to their outstanding metallic electrical conductivity. However, the hydrophilicity of MXene films may affect their stability and reliability when applied in moist or wet environments. Herein, for the first time, an efficient and facile approach is reported to fabricate freestanding, flexible, and hydrophobic MXene foam with reasonable strength by assembling MXene sheets into films followed by a hydrazine-induced foaming process. In striking contrast to well-known hydrophilic MXene materials, the MXene foams surprisingly exhibit hydrophobic surfaces and outstanding water resistance and durability. More interestingly, a much enhanced EMI-shielding effectiveness of ≈70 dB is achieved for the lightweight MXene foam as compared to its unfoamed film counterpart (53 dB) due to the highly efficient wave attenuation in the favorable porous structure. Therefore, the hydrophobic, flexible, and lightweight MXene foam with an excellent EMI-shielding performance is highly promising for applications in aerospace and portable and wearable smart electronics.
超薄、超轻、超灵活的电磁干扰(EMI)屏蔽材料是迫切需要的,以应对日益严重的辐射污染。二维过渡金属碳化物(MXenes)因其出色的金属导电性,被认为是石墨烯的一种很有前途的替代品,可提供卓越的 EMI 屏蔽性能。然而,MXene 薄膜的亲水性可能会影响其在潮湿或湿润环境中的稳定性和可靠性。在此,首次报道了一种高效且简单的方法,通过将 MXene 片组装成薄膜,然后通过水合肼诱导发泡过程,制备出具有合理强度的独立、灵活和疏水的 MXene 泡沫。与众所周知的亲水 MXene 材料形成鲜明对比的是,MXene 泡沫出人意料地表现出疏水表面和出色的耐水性和耐久性。更有趣的是,与未发泡的薄膜相比,轻量级 MXene 泡沫的 EMI 屏蔽效能显著提高了约 70dB(53dB),这是由于在有利的多孔结构中,波的衰减效率非常高。因此,具有优异 EMI 屏蔽性能的疏水、灵活、超轻的 MXene 泡沫在航空航天以及便携式和可穿戴智能电子产品领域具有广阔的应用前景。