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Synergistic interactions between silver decorated graphene and carbon nanotubes yield flexible composites to attenuate electromagnetic radiation

机译:银色装饰石墨烯和碳纳米管之间的协同相互作用产生柔性复合材料以衰减电磁辐射

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The need of today's highly integrated electronic devices, especially working in the GHz frequencies, is to protect them from unwanted interference from neighbouring devices. Hence, lightweight, flexible, easy to process microwave absorbers were designed here by dispersing conductive multiwall carbon nanotubes (MWNTs) and silver nanoparticles decorated onto two-dimensional graphene sheets (rGO@Ag) in poly(e-caprolactone) (PCL). In this study, we have shown how dielectric losses can be tuned in the nanocomposites by rGO@Ag nano-hybrid; an essential criterion for energy dissipation within a material resulting in effective shielding of the incoming electromagnetic (EM) radiation. Herein, the conducting pathway for nomadic charge transfer in the PCL matrix was established by MWNTs and the attenuation was tuned by multiple scattering due to the large specific surface area of rGO@Ag. The latter was possible because of the fine dispersion state of the Ag nanoparticles which otherwise often agglomerate if mixed separately. The effect of individual nanoparticles on microwave attenuation was systematically assessed here. It was observed that this strategy resulted in strikingly enhanced microwave attenuation in PCL nanocomposites in contrast to addition of individual particles. For instance, PCL nanocomposites containing both MWNTs and rGO@Ag manifested in a SET of -37 dB and, interestingly, at arelatively smaller fraction. The SE shown by this particular composite makes it a potential candidate for many commercial applications as reflected by its exceptional absorption capability (91.3%).
机译:需要今天的高度集成的电子设备,在GHz的频率尤其是工作,是保护他们免受不必要的干扰来自相邻设备。因此,重量轻,柔性,易处理的微波吸收器,在这里通过分散导电性的多壁碳纳米管(MWNT)和银纳米颗粒的装饰设计到在聚二维石墨烯片(RGO @ Ag)的(ε-己内酯)(PCL)。在这项研究中,我们已经表明损失是如何电介质可以在纳米复合材料通过RGO @银纳米杂化来调谐;用于能量耗散导致到来的电磁(EM)辐射的有效屏蔽的材料内的基本标准。这里,为了在PCL矩阵游牧电荷转移导电通路由碳纳米管建立和衰减通过多次散射由于RGO的@的Ag的大的比表面积调整。后者是可能的,因为银纳米颗粒,否则常常分别结块混合的细分散状态的。微波衰减单个纳米粒子的影响进行了系统的评估在这里。据观察,这种策略导致相比于除了单个颗粒在纳米复合材料PCL显着增强微波衰减。例如,含有多壁碳纳米管和RGO @银纳米复合材料PCL表现在-37 dB的SET和有趣的是,在arelatively较小部分。通过该特定的复合所示的SE使得它通过其特殊的吸收能力(91.3%)的反射对于许多商业应用的潜在候选者。

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