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具有聚乙烯醇(PVA)和四氧化三铁(Fe₃O₄)纳米填料的单层石墨烯组装三维多孔碳复合材料:界面介导的优异介电和电磁干扰屏蔽性能

Single-layer graphene-assembled 3D porous carbon composites with PVA and Fe₃O₄ nano-fillers: an interface-mediated superior dielectric and EMI shielding performance.

作者信息

Rao B V Bhaskara, Yadav Prasad, Aepuru Radhamanohar, Panda H S, Ogale Satishchandra, Kale S N

机构信息

Department of Applied Physics, Defence Institute of Advanced Technology, Girinagar, Pune 411025, India.

出版信息

Phys Chem Chem Phys. 2015 Jul 28;17(28):18353-63. doi: 10.1039/c5cp02476e.

Abstract

In this study, a novel composite of Fe3O4 nanofiller-decorated single-layer graphene-assembled porous carbon (SLGAPC) with polyvinyl alcohol (PVA) having flexibility and a density of 0.75 g cm(-3) is explored for its dielectric and electromagnetic interference (EMI) response properties. The composite is prepared by the solution casting method and its constituents are optimized as 15 wt% SLGAPC and 20 wt% Fe3O4 through a novel solvent relaxation nuclear magnetic resonance experiment. The PVA-SLGAPC-Fe3O4 composite shows high dielectric permittivity in the range of 1 Hz-10 MHz, enhanced by a factor of 4 as compared to that of the PVA-SLGAPC composite, with a reduced loss by a factor of 2. The temperature dependent dielectric properties reveal the activation energy behaviour with reference to the glass transition temperature (80 °C) of PVA. The dielectric hysteresis with the temperature cycle reveals a remnant polarization. The enhanced dielectric properties are suggested to be the result of improvement in the localized polarization of the integrated interface system (Maxwell-Wagner-Sillars (MWS) polarization) formed by the uniform adsorption of Fe3O4 on the surface of SLGAPC conjugated with PVA. The EMI shielding property of the composite with a low thickness of 0.3 mm in the X-band (8.2-12.4 GHz) shows a very impressive shielding efficiency of ∼15 dB and a specific shielding effectiveness of 20 dB (g cm(-3))(-1), indicating the promising character of this material for flexible EMI shielding applications.

摘要

在本研究中,探索了一种新型复合材料,即由四氧化三铁纳米填料修饰的单层石墨烯组装多孔碳(SLGAPC)与具有柔韧性且密度为0.75 g cm⁻³的聚乙烯醇(PVA)组成的复合材料,研究其介电和电磁干扰(EMI)响应特性。该复合材料通过溶液浇铸法制备,并通过一项新颖的溶剂弛豫核磁共振实验将其成分优化为15 wt%的SLGAPC和20 wt%的四氧化三铁。PVA - SLGAPC - 四氧化三铁复合材料在1 Hz - 10 MHz范围内显示出高介电常数,与PVA - SLGAPC复合材料相比提高了4倍,损耗降低了2倍。与温度相关的介电性能揭示了相对于PVA的玻璃化转变温度(80°C)的活化能行为。随温度循环的介电滞后显示出剩余极化。增强的介电性能被认为是由于四氧化三铁均匀吸附在与PVA共轭的SLGAPC表面形成的集成界面系统(麦克斯韦 - 瓦格纳 - 西勒斯(MWS)极化)的局部极化得到改善的结果。在X波段(8.2 - 12.4 GHz)厚度仅为0.3 mm的该复合材料的EMI屏蔽性能显示出非常令人印象深刻的屏蔽效率约为15 dB,比屏蔽效能为20 dB(g cm⁻³)⁻¹,表明这种材料在柔性EMI屏蔽应用方面具有广阔前景。

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