School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tianjin 300350, China.
Key Laboratory of Functional Polymer Materials, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Nankai University, Tianjin 300350, China.
ACS Nano. 2023 May 9;17(9):8420-8432. doi: 10.1021/acsnano.3c00338. Epub 2023 Apr 19.
Highly conductive MXene material exhibits outstanding dissipation capability of electromagnetic (EM) waves. However, the interfacial impedance mismatch due to high reflectivity restricts the application of MXene-based EM wave absorbing materials. Herein, a direct ink writing (DIW) 3D printing strategy to construct lightweight and stiff MXene/graphene oxide aerogels (SMGAs) with controllable fret architecture is demonstrated, exhibiting tunable EM wave absorption properties by manipulating impedance matching. Noteworthy, the maximum reflection loss variation value (ΔRL) of SMGAs is -61.2 dB by accurately modulating the width of the fret architecture. The effective absorption region () of SMGAs exhibits consecutive multiband tunability, and the broadest tunable (Δ) is 14.05 GHz, which could be continuously tuned in the whole C- (4-8 GHz), X- (8-12 GHz), and Ku-bands (12-18 GHz). Importantly, the hierarchical structures and the orderly stacking of filaments endow lightweight SMGAs (0.024 g cm) with a surprising compression resistance, which can withstand 36 000 times its own weight without obvious deformation. Finite element analysis (FEA) further indicates that the hierarchical structure facilitates stress dispersion. The strategy developed here provides a method for fabricating tunable MXene-based EM wave absorbers that are lightweight and stiff.
高导电性 MXene 材料表现出优异的电磁波消散能力。然而,由于高反射率导致的界面阻抗失配限制了基于 MXene 的电磁波吸收材料的应用。本文展示了一种用于构建具有可控自由状态结构的轻质、刚性 MXene/氧化石墨烯气凝胶 (SMGA) 的直接墨水书写 (DIW) 3D 打印策略,通过操纵阻抗匹配来实现可调谐的电磁波吸收性能。值得注意的是,通过精确调节自由状态结构的宽度,SMGA 的最大反射损耗变化值 (ΔRL) 为-61.2dB。SMGA 的有效吸收区域 (RL) 表现出连续的多频可调谐性,最宽的可调谐范围 (Δ) 为 14.05GHz,可以在整个 C 波段 (4-8GHz)、X 波段 (8-12GHz) 和 Ku 波段 (12-18GHz) 内连续调谐。重要的是,分层结构和纤维的有序堆积赋予了轻质 SMGA(0.024gcm)令人惊讶的抗压能力,它可以承受 36000 倍自身重量的压力而没有明显的变形。有限元分析 (FEA) 进一步表明,分层结构有利于应力分散。本研究提出的策略为制造轻质、刚性的可调谐 MXene 基电磁波吸收体提供了一种方法。