单向取向碳基气凝胶的制备及电磁屏蔽性能研究

翟天亮1,2, 柴磊1, 李江浩1, 王兴义1, 韦良强2, 张春梅1, *

化工新型材料 ›› 2022, Vol. 50 ›› Issue (3) : 206 -210.

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化工新型材料 ›› 2022, Vol. 50 ›› Issue (3) : 206-210. DOI: 10.19817/j.cnki.issn1006-3536.2022.03.042
科学研究

单向取向碳基气凝胶的制备及电磁屏蔽性能研究

    翟天亮1,2, 柴磊1, 李江浩1, 王兴义1, 韦良强2, 张春梅1, *
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Preparation of unidirectional orientated carbon-based aerogel and its electromagnetic shielding performance

  • Zhai Tianliang1,2, Chai Lei1, Li Jianghao1, Wang Xingyi1, Wei Liangqiang2, Zhang Chunmei1
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摘要

碳基气凝胶具有自支撑的三维导电网络,是开发新型高性能电磁屏蔽及吸波材料的研究热点。通过单向冷冻干燥法制备了具有单向取向结构的碳纳米管/壳聚糖(CNT/CS)气凝胶,考察了不同CNT/CS浓度及配比对气凝胶冷冻速率、线性收缩率、微观结构、电导率和电磁屏蔽效能的影响,研究了取向方向对气凝胶导电性能和电磁屏蔽效能的影响。结果表明:CNT/CS气凝胶具有显著的各向异性,取向方向上的电导率最高可达14.34S/m,是垂直于取向方向上的1.5~3.0倍。CNT/CS气凝胶具有优良的电磁屏蔽效能,在12GHz的频率下屏蔽效能最高可达20.3dB。气凝胶在垂直于取向方向上的电磁屏蔽效能高于取向方向。

Abstract

Carbon-based aerogel has a self-supporting 3D conductive network,which is a research hotspot in the development of new high-performance electromagnetic shielding and microwave absorbing materials.Carbon nanotube/chitosan (CNT/CS) aerogels with unidirectional orientation structure were prepared by a unidirectional freeze-drying method.The effects of different CNT/CS concentrations and ratios on the freezing rate,linear shrinkage,microstructure,electrical conductivity,and electromagnetic shielding effectiveness of the aerogels were investigated,and also studied the influence of orientation direction on the electrical conductivity and electromagnetic shielding effectiveness.The results showed that the CNT/CS aerogel had significant anisotropy,and the conductivity in the orientation direction reached up to 14.34S/m,which was 1.5 to 3.0 times the direction perpendicular to the orientation.CNT/CS aerogel had excellent electromagnetic shielding effectiveness,the shielding effectiveness up to 20.3dB at the frequency of 12GHz.The electromagnetic shielding effectiveness of the aerogels perpendicular to the orientation direction was higher than that of the orientation direction.

关键词

碳基气凝胶 / 碳纳米管 / 取向结构 / 电磁屏蔽

Key words

carbon-based aerogel / carbon nanotube / orientation structure / electromagnetic shielding

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单向取向碳基气凝胶的制备及电磁屏蔽性能研究[J]. 化工新型材料, 2022, 50(3): 206-210 DOI:10.19817/j.cnki.issn1006-3536.2022.03.042

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参考文献

[1] Gupta S,Tai N H.Carbon materials and their composites for electromagnetic interference shielding effectiveness in X-band[J].Carbon,2019,152:159-187.
[2] Abbasi H,Antunes M,Velasco J I.Recent advances in carbon-based polymer nanocomposites for electromagnetic interference shielding[J].Progress in Materials Science,2019,103:319-373.
[3] Jiang D W,Murugadoss V,Wang Y,et al.Electromagnetic interference shielding polymers and nanocomposites-a review[J].Polymer Reviews,2019,59(2):280-337.
[4] Kumar P,Maiti U N,Sikdar A,et al.Recent advances in polymer and polymer composites for electromagnetic interference shielding:review and future prospects[J].Polymer Reviews,2019,59(4):687-738.
[5] Bauhofer W,Kovacs J Z.A review and analysis of electrical percolation in carbon nanotube polymer composites[J].Composites Science and Technology,2009,69(10):1486-1498.
[6] Zhan Y H,Lavorgna M,Buonocore G,et al.Enhancing electrical conductivity of rubber composites by constructing interconnected network of self-assembled graphene with latex mixing[J].Journal of Materials Chemistry,2012,22(21):10464-10468.
[7] Li Y,Pei X L,Shen B,et al.Polyimide/graphene composite foam sheets with ultrahigh thermostability for electromagnetic interference shielding[J].RSC Advances,2015,5(31):24342-24351.
[8] Lu Z G,Ma L M,Tan J B,et al.Transparent multi-layer graphene/polyethylene terephthalate structures with excellent microwave absorption and electromagnetic interference shielding performance[J].Nanoscale,2016,8(37):16684-16693.
[9] Chen Z P,Xu C,Ma C Q,et al.Lightweight and flexible graphene foam composites for high-performance electromagnetic interference shielding[J].Advanced Materials,2013,25(9):1296-1300.
[10] Zhang H M,Zhang G C,Tang M,et al.Synergistic effect of carbon nanotube and graphene nanoplates on the mechanical,electrical and electromagnetic interference shielding properties of polymer composites and polymer composite foams[J].Chemical Engineering Journal,2018,353:381-393.
[11] de Luna M S,Wang Y,Zhai T,et al.Nanocomposite polymeric materials with 3d graphene-based architectures:from design strategies to tailored properties and potential applications[J].Progress in Polymer Science,2019,89:213-249.
[12] Barrios E,Fox D,Sip Y Y L,et al.Nanomaterials in advanced,high-performance aerogel composites:a review[J].Polymers,2019,11(4):726.
[13] Salimian S,Zadhoush A,Naeimirad M,et al.A review on aerogel:3d nanoporous structured fillers in polymer-based nanocomposites[J].Polymer Composites,2018,39(10):3383-3408.
[14] Wan Y J,Zhu P L,Yu S H,et al.Ultralight,super-elastic and volume-preserving cellulose fiber/graphene aerogel for high-performance electromagnetic interference shielding[J].Carbon,2017,115:629-639.
[15] Singh S,Tripathi P,Bhatnagar A,et al.A highly porous,light weight 3d sponge like graphene aerogel for electromagnetic interference shielding applications[J].RSC Advances,2015,5(129):107083-107087.
[16] 薛飞,李伟,冯博文,等.石墨烯气凝胶/Bmi复合材料的制备及性能研究[J].沈阳航空航天大学学报,2020,37(4):47-53.

基金资助

贵阳市科技局贵阳学院专项资金【GYU-KY-〔2021〕】;贵阳市科技计划项目【筑科合同〔2020〕37-3】;贵州省科技计划项目【黔科合基础[2019]1188号】;贵州省普通本科高等学校工程研究中心【黔教合KY字[2012]023号】

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