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首页> 外文期刊>Chemical engineering journal >An approach to widen the electromagnetic shielding efficiency in PDMS/ferrous ferric oxide decorated RGO-SWCNH composite through pressure induced tunability
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An approach to widen the electromagnetic shielding efficiency in PDMS/ferrous ferric oxide decorated RGO-SWCNH composite through pressure induced tunability

机译:通过压力诱导可调性地扩展PDMS /亚铁氧化铁氧化物中的电磁屏蔽效率的方法,装饰了RGO-SWCNH复合材料

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摘要

In the present era, the advanced technology demands for the fabrication of light weight and compressible high performance electromagnetic interference (EMI) shielding materials for adaptable shielding application in the area of modern electronic gadgets and telecommunication devices. This study highlights facile fabrication of such lightweight compressible porous polydimethylsiloxane (PDMS)/FRS [Ferrous ferric oxide (Fe3O4) decorated reduced graphene oxide (RGO)/single wall carbon nanohorn (SWCNH)] composite for tunable EMI shielding applications. The Fe powder used to reduce GO, was decorated on the SWCNH and RGO as Fe3O4 during the in situ reaction. FRS dispersed PDMS was allowed to soak and cured in a sugar cube, followed by leaching out of the sugar to obtain highly porous network structure with lightweight and compressible PDMS/FRS composite. The composite possessed an absorption-dominated good comprehensive EMI shielding performance, possibly due to both conductive dissipation and multiple reflections and scattering of EM waves by the inside 3D conductive RGO-SWCNH network with ferromagnetic Fe3O4 nanoparticles. The measurement of attenuation constant and loss tangent describe the absorption property of the composite. The shielding performance of the composite could be simply adjusted owing to its' pressure induced compressible property, applicable as smart tunable EMI shielding material.
机译:在目前的时代,先进的技术要求在现代电子小工具和电信设备领域的适应性屏蔽应用中制造轻的重量和可压缩高性能电磁干扰(EMI)屏蔽材料。本研究突出了这种轻质可压缩多孔聚二甲基硅氧烷(PDMS)/ FRS的体积制备[亚铁氧化铁(Fe3O4)装饰的还原的石墨烯(RGO)/单壁碳纳米(SWCNH)]复合材料,用于可调谐EMI屏蔽应用。用于减少去的Fe粉末,在SWCNH和RGO作为FE3O4在原位反应中装饰。将分散的PDMS分散在糖立方体中浸泡并固化,然后用轻质和可压缩的PDMS / FRS复合材料浸出糖以获得高度多孔的网络结构。复合材料具有吸收主导的良好综合EMI屏蔽性能,可能是由于内部3D导电RGO-SWCNH网络与铁磁FE3O4纳米颗粒的导电耗散和EM波的多重反射和散射。衰减常数和损耗切线的测量描述了复合材料的吸收性能。由于其“压力诱导的可压缩性能,可以简单地调整复合材料的屏蔽性能,适用于智能可调EMI屏蔽材料。

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