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Lightweight and high-performance electromagnetic radiation shielding composites based on a surface coating of Cu@Ag nanoflakes on a leather matrix

机译:基于Cu @ Ag纳米薄片在皮革基质上的表面涂层的轻型高性能电磁辐射屏蔽复合材料

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摘要

A leather matrix (LM) was used as a microwave-absorptive substrate to surface coat with Cu@Ag nanoflakes to prepare a lightweight, high-performance and wearable nanocomposite shielding material. The essence of this strategy is that the shielding capacity of the nanocomposite is dependent not only on the reflectivity of Cu@Ag nanoflakes to microwaves, but also on the absorption capacity of the LM to the incident microwaves via dielectric loss. In this way, an extremely low content of Cu@Ag nanoflakes is enough for LM-Cu@Ag to achieve superior high shielding ability (similar to 100 dB), thus showing lightweight high-performance shielding ability (specific shielding effectiveness up to 120 dB cm(3) g(-1)) in a board frequency range (10-3000 MHz, 8-12 GHz). Moreover, this nanocomposite shielding material is also able to be tailored into wearable clothing, demonstrating its practical wearability.
机译:皮革基质(LM)用作微波吸收性基材,以Cu @ Ag纳米薄片进行表面涂覆,以制备轻巧,高性能且可穿戴的纳米复合材料屏蔽材料。该策略的本质在于,纳米复合材料的屏蔽能力不仅取决于Cu @ Ag纳米薄片对微波的反射率,还取决于LM通过介电损耗对入射微波的吸收能力。这样,Cu @ Ag纳米薄片的含量极低,足以使LM-Cu @ Ag获得卓越的高屏蔽能力(类似于100 dB),从而显示出轻量级的高性能屏蔽能力(特定屏蔽效率高达120 dB)板频率范围(10-3000 MHz,8-12 GHz)中的cm(3)g(-1))。而且,这种纳米复合材料屏蔽材料也能够定制成可穿戴的衣服,证明其实用的可穿戴性。

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