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Microwave absorption properties of heterostructure composites of two dimensional layered magnetic materials and graphene nanosheets

机译:二维分层磁性材料和石墨烯纳米片的异质结构复合材料的微波吸收性能

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Recently, intrinsic ferromagnetism of layered van der Waals compounds (such as CrCl3, CrI3, and Cr2Ge2Te6) has received widespread attention. Herein, layered van der Waals heterostructure composites of two dimensional layered magnetic material CrCl3 and graphene nanosheets (GNSs) are facilely obtained and investigated as microwave absorption materials. The complex permittivity and complex permeability of heterostructure composites can be adjusted by modulating the mass ratio of GNS and CrCl3. The real part and imaginary part of permittivity increase with the increase in the mass fraction of GNS in composites, due to the high conductivity of GNS. Thus, dielectric loss is enhanced and originates from the Debye relaxation process and the interfacial polarization process. The minimum reflection loss (RL) of the CrCl3-GNS heterostructure composite with a GNS mass fraction of 40wt. % can reach -46.2dB at a microwave frequency of 10GHz with a thickness of 1.9mm. In addition, the RL less than -10dB can be achieved at different frequencies with all thicknesses (1-5mm). This work might provide the practical application of two dimensional layered magnetic materials as ultrahigh-performance microwave absorption materials.
机译:最近,层状van der Wa种化合物的内在铁磁性(如CRCl3,CRI3和CR2GE2Te6)已经受到广泛的关注。这里,两维层叠磁性材料CRCl3和石墨烯纳米片(GNSS)的层状van der WaaS杂结构复合物被施加并研究作为微波吸收材料。通过调节GNS和CRCl3的质量比来调节异质结构复合材料的复杂介电常数和复杂渗透性。由于GNS的高导电性,介电常数的实际部分和虚部的介电积分随着GNS的质量分数的增加而增加。因此,提高了介电损耗并源自去德义弛豫过程和界面极化过程。 CRCl3-GNS异质结构复合材料的最小反射损失(RL),具有40Wt的GNS质量分数。 %可以在10GHz的微波频率下达到-46.2dB,厚度为1.9mm。另外,可以在不同厚度(1-5mm)的不同频率下实现小于-10dB的RL。这项工作可能提供二维分层磁性材料的实际应用,作为超高性能微波吸收材料。

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