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Laminated magnetic graphene with enhanced electromagnetic wave absorption properties

机译:具有增强的电磁波吸收特性的叠层磁性石墨烯

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摘要

Graphene is highly desirable as an electromagnetic wave absorber because of its high dielectric loss and low density. Nevertheless, pure graphene is found to be non-magnetic and contributes to microwave energy absorption mostly because of its dielectric loss, and the electromagnetic parameters of pure graphene, which are out of balance, result in a bad impedance matching characteristic. In this paper, we report a facile solvothermal route to synthesize laminated magnetic graphene. The results show that there have been significant changes in the electromagnetic properties of magnetic graphene when compared with pure graphene. Especially the dielectric Cole-Cole semicircle suggests that there are Debye relaxation processes in the laminated magnetic graphene, which prove beneficial to enhance the dielectric loss. We also proposed an electromagnetic complementary theory to explain how laminated magnetic graphene, with the combined advantages of graphene and magnetic particles, helps to improve the standard of impedance matching for electromagnetic wave absorbing materials. Besides, microwave absorption properties indicate that the reflection loss of the as-prepared composite is below -10 dB (90% absorption) at 10.4-13.2 GHz with a coating layer thickness of 2.0 mm. This further confirms that the nanoscale surface modification of magnetic particles on graphene makes graphene-based composites have a certain research value in electromagnetic wave absorption.
机译:石墨烯由于其高介电损耗和低密度而非常需要作为电磁波吸收剂。然而,发现纯石墨烯是非磁性的并且主要由于其介电损耗而有助于微波能量吸收,并且纯石墨烯的电磁参数失衡,导致不良的阻抗匹配特性。在本文中,我们报告了一种容易的溶剂热途径来合成叠层磁性石墨烯。结果表明,与纯石墨烯相比,磁性石墨烯的电磁性能发生了显着变化。尤其是介电的Cole-Cole半圆表明,叠层磁性石墨烯中存在Debye弛豫过程,这被证明有助于提高介电损耗。我们还提出了一种电磁互补理论来解释层合磁性石墨烯如何结合石墨烯和磁性颗粒的优点来帮助提高电磁波吸收材料的阻抗匹配标准。此外,微波吸收性质表明,在2.0-1的涂层厚度下,在10.4-13.2GHz下,所制备的复合材料的反射损耗低于-10dB(90%吸收)。这进一步证实了石墨烯上磁性颗粒的纳米级表面改性使得石墨烯基复合材料在电磁波吸收方面具有一定的研究价值。

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