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Challenges and future perspectives on microwave absorption based on two-dimensional materials and structures

机译:基于二维材料和结构的微波吸收对挑战和未来观点

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摘要

The widespread use of electronic equipment, such as computers, cell phones, communication devices and wireless facilities, has increased electromagnetic radiation, which can cause cancer and other diseases in humans. Furthermore, there is an urgent need for excluding the interferences in the aircraft and other precise instruments in military aspects. Therefore, minimizing and attenuating electromagnetic waves are critical issues. In this review, various two-dimensional (2D) materials and structures are discussed for microwave-absorbing and shielding in terms of 'thin, light, wide, and strong' requirements. The typical absorption and attenuation mechanisms are analysed and summarized to deliver an overall view and offer possible trends for future developments. Multiple works have revealed that 2D materials and structures are promising for use in microwave devices. In addition to conventional materials with 2D structures, we focus on new graphene-like materials, such as 2D transition metal dichalcogenides and black phosphorus, due to their beneficial absorbing and shielding properties. These 2D materials will likely play an important role in electromagnetic wave absorption and cancellation in the future. Finally, the related challenges and some new 2D materials are briefly discussed.
机译:电子设备的广泛使用,例如计算机,手机,通信设备和无线设施,具有增加的电磁辐射,这可能导致人类的癌症和其他疾病。此外,迫切需要排除飞机的干扰和军事方面的其他精确仪器。因此,最小化和衰减电磁波是关键问题。在本文中,在“薄,光线,广泛和强烈”要求方面,讨论了各种二维(2D)材料和结构,用于微波吸收和屏蔽。分析并总结了典型的吸收和衰减机制,以提供整体观点,并为未来发展提供可能的趋势。多种作品揭示了2D材料和结构是有希望用于微波器件的。除了具有2D结构的常规材料之外,由于其有益的吸收和屏蔽性能,我们专注于新的石墨烯样品,例如2D过渡金属二甲基甲基化物和黑磷。这些2D材料可能在未来的电磁波吸收和取消中发挥重要作用。最后,简要讨论了相关的挑战和一些新的2D材料。

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