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Interfacial design of sandwich-like CoFe@Ti_3C_2T_x composites as high efficient microwave absorption materials

机译:三明治状CoFe @ Ti_3C_2T_x复合材料的界面设计作为高效微波吸收材料

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Ti3C2Tx MXene exhibits great potential application in the microwave absorption (MA) field mainly due to its two-dimensional (2D) characteristic and high dielectric loss. However, their wide application is limited by the inferior properties of without magnetic loss and narrow bandwidth in microwave frequency range. Driven by the further demands of MA performance improvement, sandwich-like CoFe@Ti3C2Tx composites are designed and successfully fabricated by in-situ reduction in the presence of hydrazine, and the minimum reflection loss (RL) value of -36.29 dB at 8.56 GHz could be achieved with the thickness of 2.2 mm. The enhanced microwave absorption of CoFe@Ti3C2Tx composites should originate from the unique sandwich-like structure, good impedance matching characteristic, and enhanced interfacial polarization. In addition, the coating made by CoFe@Ti3C2Tx composites located on the substrates of aluminum plate and fabric exhibited good heat dissipation capability, which was studied through thermal infrared images. This work provides a new avenue for exploring high-performance microwave absorbers of MXene-based magnetic materials.
机译:Ti3C2Tx MXene主要由于其二维(2D)特性和高介电损耗而在微波吸收(MA)领域中显示出巨大的潜力。然而,它们的广泛应用受到在微波频率范围内无磁损耗和窄带宽的不良特性的限制。在MA性能提高的进一步要求的驱使下,通过在肼存在下进行原位还原,成功设计并成功制备了三明治状CoFe @ Ti3C2Tx复合材料,在8.56 GHz时,最小反射损耗(RL)值为-36.29 dB。厚度为2.2毫米。 CoFe @ Ti3C2Tx复合材料对微波的吸收增强应归因于独特的三明治状结构,良好的阻抗匹配特性和增强的界面极化。此外,CoFe @ Ti3C2Tx复合材料制成的涂层位于铝板和织物的基材上,具有良好的散热能力,并通过红外热像进行了研究。这项工作为探索基于MXene的磁性材料的高性能微波吸收器提供了新途径。

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