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基于 FeCo 锚定还原氧化石墨烯框架的含碳纳米管的软复合材料作为具有优异散热能力的高效微波吸收体。

FeCo-Anchored Reduced Graphene Oxide Framework-Based Soft Composites Containing Carbon Nanotubes as Highly Efficient Microwave Absorbers with Excellent Heat Dissipation Ability.

机构信息

Department of Materials Engineering, Indian Institute of Science , Bangalore, India 560012.

Department of Chemistry, National Institute of Technology Durgapur 713209, West Bengal, India.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 7;9(22):19202-19214. doi: 10.1021/acsami.7b04053. Epub 2017 May 25.

DOI:10.1021/acsami.7b04053
PMID:28520409
Abstract

Conducting polymer composites containing ferromagnetic grafted-graphene derivatives are already appreciated for their lightweight, flexibility, and cost effectiveness in terms of microwave absorption. To further leverage the said properties of this wonder material, we propose a highly efficient replacement by blending conducting multiwall carbon nanotube (MWCNT) and FeCo anchored covalent cross-linked reduced graphene oxide (rGO) with poly(vinylidene fluoride) (PVDF). Interconnected conducting network of MWCNTs introduces higher electrical conductivity in the blend which is essential for microwave absorption. FeCo-anchored porous interconnected rGO framework was designed via solvent-mediated in situ coreduction in the presence of Fe(II) and Co(II) precursors. Resulting cross-linked-rGO/FeCo displays fascinating coexistence of ferromagnetism and conducting-dielectric behavior, while largely preserving the robust 3D porous interconnected structure. Coupled with conducting MWCNTs, diamine cross-linked rGO/FeCo in a soft polymer matrix yields remarkably high total shielding effectiveness (SE) of -41.2 dB at 12 GHz, for a meager 10 wt % filler content. In addition, the composite materials display efficient heat dissipation abilities in conjunction with the trend in their thermal conductivities. This new-age microwave-absorbing material, powered by multifunctionality and tunable magnetodielectric properties, henceforth offers an amendable, cost-effective replacement to the existing solutions.

摘要

含磁性接枝石墨烯衍生物的导电聚合物复合材料因其在微波吸收方面的轻质、灵活性和成本效益而受到关注。为了进一步利用这种神奇材料的上述特性,我们通过将导电多壁碳纳米管 (MWCNT) 和 FeCo 锚定的共价交联还原氧化石墨烯 (rGO) 与聚偏二氟乙烯 (PVDF) 共混,提出了一种高效替代品。MWCNTs 的互联导电网络为共混物引入了更高的电导率,这对于微波吸收至关重要。通过在 Fe(II) 和 Co(II) 前体存在下的溶剂介导原位共还原设计了 FeCo 锚定的多孔互联 rGO 骨架。所得交联-rGO/FeCo 表现出迷人的铁磁性和导电介电行为共存,同时很大程度上保留了坚固的 3D 多孔互联结构。在软聚合物基体中与导电 MWCNTs 结合,交联 rGO/FeCo 在 12GHz 时的总屏蔽效率 (SE) 高达-41.2dB,填充量仅为 10wt%。此外,这些复合材料还具有高效的散热能力,同时伴随着其热导率的变化。这种新型的微波吸收材料具有多功能性和可调谐的磁电特性,为现有解决方案提供了一种可修改、具有成本效益的替代品。

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