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Graphene Derivatives Doped with Nickel Ferrite Nanoparticles as Excellent Microwave Absorbers in Soft Nanocomposites

机译:用镍铁氧体纳米颗粒掺杂的石墨烯衍生物作为软纳米复合材料中的优异微波吸收剂

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Herein, we report the development of soft polymeric composites containing multiwall carbon nanotubes (MWNTs, 1–3 wt%) and graphene derivatives doped with nickel ferrite nanoparticles (rGO@NF, 10 wt%) as lightweight microwave absorbers. The soft nanocomposites were designed using melt-mixed blends of varying compositions of PC (polycarbonate) and SAN (poly styrene acrylonitrile) by compartmentalized functional nanoparticles in one of the components of the blend (here PC). Maximum attenuation of the incoming electromagnetic (EM) radiation mainly through absorption was achieved. The heterodielectric media at microscopic length scale in the PC component provided large interfaces which facilitated multiple scattering thereby attenuating the incoming EM radiation. This strategy of positioning the functional nanoparticles in one of the components in the blends resulted in significantly enhanced shielding effectiveness (SE), at any given concentration of MWNTs, in contrast to PC based composites. This enhancement in SE was realized in the special morphology of the bicomponent PC/SAN=60/40 wt% blends where both the components are continuous. The enhanced SE in co-continuous blends is due to combined effect of enhanced electrical conductivity (more precisely due to interconnected network of the nanoparticles) and the presence of a hetero-dielectric media generating large scattering interfaces. For instance, the PC/SAN (60/40 wt%) co-continuous blend containing 3 wt% MWNTs and 10 wt% rGO@NF manifested in a total shielding effectiveness (SE_T) of -32.3 dB (i. e. more than 99.9% attenuation of incoming EM radiation) mainly through absorption.
机译:本文中,我们报告了含有多壁碳纳米管(MWNT,1-3 wt%)的软聚合物复合材料和用镍铁素纳米颗粒(RGO@nf,10 wt%)掺杂的石墨烯衍生物作为轻量级微海吸收器。使用融化的PC(聚碳酸酯)和SAN(聚苯乙烯丙烯腈)的融化混合物设计了软纳米复合材料,该混合物是通过在混合物的一个组件中通过分隔的功能性纳米粒子(在此PC)中设计的。主要通过吸收实现了传入电磁(EM)辐射的最大衰减。 PC组件中的显微镜长度尺度上的异质介质提供了较大的界面,从而促进了多个散射,从而减弱了传入的EM辐射。与基于PC的复合材料相比,这种在混合物中的组件之一中定位功能性纳米颗粒的策略导致屏蔽效率显着增强(SE)。 SE中的这种增强是在双组分PC/SAN = 60/40 wt%混合物的特殊形态中实现的,在这两个组件是连续的,其中两个组件都是连续的。增强的共连接混合物中的SE是由于增强的电导率的综合作用(更确切地说是由于纳米粒子的互连网络)以及存在杂型介质产生大散射接口的存在。例如,PC/SAN(60/40 wt%)共连接混合物,其中包含3 wt%MWNT和10 wt%rgo@nf@nf在-32.3 dB的总屏蔽效率(SE_T)中表现出来(即超过99.9%)收入EM辐射)主要通过吸收。

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