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采用超声共混法制备了不同管径的CNTs/Al2O3-TiO2复合粉末,利用等离子喷涂技术制备了CNTs/Al2O3-TiO2复合涂层,对不同管径的CNTs/Al2O3-TiO2复合粉末和喷涂后的复合吸波涂层进行了拉曼光谱分析,等离子喷涂处理后,CNTs的拉曼光谱特征D峰和G峰强度明显增大,随CNTs管径的增大,复合涂层中CNTs的D峰和G峰的强度比ID/IG值减小,石墨化程度提高.吸波反射率结果显示:涂层厚度为1.0 mm的CNTs/Al2O3-TiO2复合涂层的吸波效果不佳,随着厚度的增加,涂层的吸波性能提高.随管径的增大,涂层厚度为1.5 mm的CNTs/Al2O3-TiO2复合涂层的反射率峰值先减小后增大,小于-5 dB频带宽逐渐减小,小于-10 dB频带宽不断增大,谐振频率向高频移动.涂层厚度增加到2.0 mm,CNTs/Al2O3-TiO2复合涂层的反射率峰值向低频移动.

参考文献

[1] Iijima S.Helical microtubules of graphitic carbon,Nature,1991,354(6348):56-58.
[2] Li N,Huang Y,Du F,et al.Electromagnetic interference (EMI)shielding of single-walled carbon nanotube epoxy composites.Nano Lett.,2006,6(6):1141-1145.
[3] Larry L,Sajjad H,Dario P,et al.Size and mobility of excitons in (6,5) carbon nanotubes.Nature Physics,2009,5(1):54-58.
[4] Leroy B J,Lemay S G,Kong J,et al.Electrical generation and absorption of phonons in carbon nanotubes.Nature,2004,432(7015):371-374.
[5] Chen X L,Ma M W,Yang X M,et al.Electrical and optical properties of MWNTs/HDPE copmposites in THz region.Acta Physico-Chimica Sinica,2008,24(11):1969-1974.
[6] Odom T W,Huang J L,Kim P,et al.Atomic structure and electronic properties of single-walled carbon nanotubes.Nature,1998,391(6662):62-64.
[7] Hua S C,Wang H G,Wang L Y,et al.The adhesives strength of nanostructured AT13 ceramic coatings characterized by fractal dimension.Acta Physica Sinica,2008,57(2):1241-1245.
[8] Liu G,Wang L Y,Chen G M,et al.Preparation and properties of SiC-CNTs/Al2O3-TiO2 coating.Journal of Inorganic Materials,2011,26(3):239-243.
[9] Micheli D,Apollo C,Pastore R,et al.X-Band microwave characterization of carbon-based nanocomposite material,absorption capability comparison and RAS design simulation.Compos.Sci.Technol.,2010,70(2):400-409.
[10] Kim J B,Lee S K,Kim C G,Comparison study on the effect of carbon nano materials for single-layer microwave absorbers in X-band.Compos.Sci.Technol.2008,68(14):2909-2916.
[11] Yang Y L,Mool C Gupta.Novel carbon nanotube-polystyrene foam composites for electromagnetic interference shielding.Nano Lett.,2005,5(11):2131-2134.
[12] Huang Y,Li N,Ma Y F,et al.The influence of single-walled carbon nanotube structure on the electromagnetic interference shielding efficiency of its epoxy composites.Carbon,2007,45(8):1614-1621.
[13] Liu Z F,Bal G,Huang Y,et al.Reflection and absorption contributions to the electromagnetic interference shielding of single-walled carbon nanotube/polyurethane composites.Carbon,2007,45(4):821-827.
[14] Rata V,Coudert J F.Pressure and arc voltage coupling in dc plasma torches:Identification and extraction of oscillation modes.J.Appl.Phys.,2010,108(4):043304-1-8.
[15] Zhan Y Y,Zheng Q,Wei K M,et al.Characterization of the Pt/CeO2-ZrO2/Al2O3 Catalysts by Spectra.Spectroscopy and Spectral Analysis,20(5):709-711.
[16] Wang Y,Huang W,Wei F,et al.High temperature treatment and characterization of carbon nanotubes.Chemical Journal of Chinese Universities,2003,24(6):953-957.
[17] Cao M S,Li C S,Zhu J,et al.An approach of graphitizating carbon nanotubes at high temperature.Journal of Aeronautical Materials,2003,23(2):30-32,38.
[18] Kastner J,Picher T,Kuzmany,et al.Resonance Raman and infrared spectroscopy of carbon nanotubes.Chem.Phys.Lett.,1994,221(1/2):53-58.
[19] 汪刘应,刘顾,吴承亮,等.不同管径碳纳米管电磁特性与吸波性能研究.2011中国功能材料科技与产业高层论坛,2011:385-388.
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