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Layered structural design of flexible waterborne polyurethane conductive film for excellent electromagnetic interference shielding and low microwave reflectivity

机译:柔性水性聚氨酯导电膜的分层结构设计,具有出色的电磁干扰屏蔽和低微波反射率

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摘要

A highly efficient electromagnetic interference (EMI) shielding waterborne polyurethane (WPU) composite film with low microwave reflectivity is designed by constructing an FeCo alloy decoration reduced graphene oxide (FeCo@rGO)ano silver (Ag) layered structure. The FeCo@rGO layer formed by natural sedimentation at the bottom of the WPU film acts as a microwave absorption layer, and the ultra-thin Ag layer covered on the top surface serves as a highly efficient shielding layer. This unique layered structure combines the microwave-reflecting characteristic of nano Ag and the microwave-absorbing characteristic of rGO@FeCo to achieve strong microwave shielding effectiveness (SE) with low microwave reflection. The obtained Ag/rGO@FeCo/WPU composite film (10 wt% rGO@FeCo and Ag layer of 500 nm in thickness), which is only 300 mu m in thickness, possesses an outstanding EMI SE of 50.5 dB and the microwave reflection coefficient is as low as 0.49 (average SER of 3.2 dB). This flexible and highly efficient shielding film with extremely low reflectivity is suitable for application in portable and wearable smart electronics, and this strategy offers a new method for designing the flexible electromagnetic interference shielding materials with low reflection characteristic.
机译:通过构建FeCo合金装饰还原氧化石墨烯(FeCo @ rGO)/纳米银(Ag)层状结构,设计了一种具有低微波反射率的高效电磁屏蔽(EMI)屏蔽水性聚氨酯(WPU)复合膜。在WPU膜的底部通过自然沉积形成的FeCo @ rGO层充当微波吸收层,覆盖在上表面的超薄Ag层充当高效屏蔽层。这种独特的层状结构结合了纳米银的微波反射特性和rGO @ FeCo的微波吸收特性,从而在低微波反射率的情况下实现了强大的微波屏蔽效果(SE)。所获得的Ag / rGO @ FeCo / WPU复合膜(10wt%的rGO @ FeCo和厚度为500nm的Ag层)厚度仅为300μm,具有50.5dB的优异EMI SE和微波反射系数。低至0.49(平均SER为3.2 dB)。这种具有极低反射率的柔性高效屏蔽膜适用于便携式和可穿戴智能电子设备,该策略为设计具有低反射特性的柔性电磁干扰屏蔽材料提供了一种新方法。

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