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Synthesis and Electro-Magneto-Mechanical Properties of Graphene Aerogels Functionalized with Co-Fe-P Amorphous Alloys

机译:Co-Fe-P非晶态合金功能化的石墨烯气凝胶的合成及电磁机械性能

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摘要

Graphene aerogels (GAs) are functionalized with Fe-Co-P alloy using an electro-deposition method. The Fe-Co-P alloy coated on the graphene nanosheets is found to possess an amorphous structure and a nanoporous architecture of GAs. The electro-mechanical properties of GAs are significantly affected by the Fe-Co-P nanoparticles embedded inside GAs. The electro-mechanical responses of GA/Fe-Co-P nanoporous hybrid structures are sensitive to an applied magnetic field, demonstrating that they are promising for electro-magneto-mechanical applications. The light-weight, high-strength and nanoporous GAs functionalized with Fe-Co-P amorphous alloys are desirable sensors, actuators, and nano-electro-mechanical systems that could be controlled or manipulated by mechanical, electric and magnetic fields.
机译:石墨烯气凝胶(GAs)使用电沉积方法用Fe-Co-P合金进行功能化。发现涂覆在石墨烯纳米片上的Fe-Co-P合金具有GA的无定形结构和纳米多孔结构。嵌入到GA中的Fe-Co-P纳米粒子会显着影响GA的机电性能。 GA / Fe-Co-P纳米多孔杂化结构的机电响应对施加的磁场很敏感,这表明它们对电磁机械应用很有希望。用Fe-Co-P非晶态合金功能化的轻质,高强度和纳米多孔GA是理想的传感器,执行器和可以由机械,电场和磁场控制或操纵的纳米机电系统。

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