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Nickel Nanoparticle Encapsulated in Few-Layer Nitrogen-Doped Graphene Supported by Nitrogen-Doped Graphite Sheets as a High-Performance Electromagnetic Wave Absorbing Material

机译:镍纳米粒子包封在几层氮掺杂石墨烯中,其由氮掺杂石墨片支撑为高性能电磁波吸收材料

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Herein we develop a facile strategy for fabricating nickel particle encapsulated in few-layer nitrogen doped graphene supported by graphite carbon sheets as a high-performance electromagnetic wave (EMW) absorbing material. The obtained material exhibits sheetlike morphology with a lateral length ranging from a hundred nanometers to 2 mu m and a thickness of about 23 nm. Nickel nanoparticles with a diameter of approximately 20 nm were encapsulated in about six layers of nitrogen-doped graphene. As applied for electromagnetic absorbing material, the heteronanostructures exhibit excellent electromagnetic wave absorption property, comparable to most EMW absorbing materials previously reported. Typically, the effective absorption bandwidth (the frequency region falls within the reflection loss below -10 dB) is up to 8.5 GHz at the thicknesses of 3.0 mm for the heteronanostructures with the optimized Ni content. Furthermore, two processes, carbonization at a high temperature and subsequent treatment in hot acid solution, were involved in the preparation of the heteronanostructures, and thus, mass production was achieved easily, facilitating their practical applications.
机译:在此,我们开发了一种用于制造包封在由石墨碳片支撑的几层氮掺杂石墨烯中的镍颗粒的容易策略,作为高性能电磁波(EMW)吸收材料。所获得的材料表现出片状形态,其横向长度范围为百纳米至2μm,厚度为约23nm。直径约为20nm的镍纳米颗粒被包封在约6层氮掺杂的石墨烯中。如应用于电磁吸收材料,杂核化结构表现出优异的电磁波吸收性能,与先前报道的大多数EMW吸收材料相当。通常,有效吸收带宽(频率区域在-10 dB以下的反射损耗内)高达8.5GHz,对于具有优化的Ni含量的杂核糖结构的厚度为3.0mm。此外,在杂酸溶液中高温和随后处理的两个方法涉及杂酸溶液的制备,因此容易实现批量生产,促进其实际应用。

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