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细菌纤维素在不同的温度下进行碳化处理,将得到一系列网状结构的碳纤维.利用X射线衍射仪(XRD)、拉曼光谱仪和透射电子显微镜(TEM)对制备的碳纤维晶体结构和微观形貌进行了表征;通过矢量网络分析仪在频率600MHz~14GHz范围内对其进行了电磁参数测试;应用电磁屏蔽理论计算获得碳纤维的电磁屏蔽效能.结果表明,1200℃碳化得到的碳纤维在频率为6~14GHz之间的屏蔽效能都大于30dB,在14GHz时最高可以达到41dB,该碳纤维密度低、屏蔽效果好,在电磁屏蔽领域有较好的应用前景.

参考文献

[1] Edie DD. .The effect of processing on the structure and properties of carbon fibers[J].Carbon: An International Journal Sponsored by the American Carbon Society,1998(4):345-362.
[2] 霍彩红,何为,范中晓.碳纤维表面金属化工艺研究[J].表面技术,2003(06):40-42.
[3] 贺福.碳纤维及其应用技术[M].北京:化学工业出版社,2004:233-234.
[4] D.D.L.Chung .Electromagnetic interference shielding effectiveness of carbon materials[J].Carbon: An International Journal Sponsored by the American Carbon Society,2001(2):279-285.
[5] LIU Yan-kun,FENG Yu-jie,TIAN Yan.Electroless nickel plating on the surface of carbon fibers[J].哈尔滨工业大学学报(英文版),2009(05):601-607.
[6] Li N;Huang Y;Du F;He XB;Lin X;Gao HJ;Ma YF;Li FF;Chen YS;Eklund PC .Electromagnetic interference (EMI) shielding of single-walled carbon nanotube epoxy composites[J].Nano letters,2006(6):1141-1145.
[7] Huang CY;Mo WW;Roan ML .Studies on the influence of double-layer electroless metal deposition on the electromagnetic interference shielding effectiveness of carbon fiber/ABS composites[J].Surface & Coatings Technology,2004(2/3):163-169.
[8] Hakansson E;Amiet A;Nahavandi S;Kaynak A .Electromagnetic interference shielding and radiation absorption in thin polypyrrole films[J].European Polymer Journal,2007(1):205-213.
[9] Taosheng Wang;Guohua Chen;Cuiling Wu;Dajun Wu .Study on the graphite nanosheets/resin shielding coatings[J].Progress in Organic Coatings: An International Review Journal,2007(2):101-105.
[10] Chou KS;Huang KC;Shih ZH .Effect of mixing process on electromagnetic interference shielding effectiveness of nickel/acrylonitrile-butadiene-styrene composites[J].Journal of Applied Polymer Science,2005(1):128-135.
[11] Dong XL;Zhang XF;Huang H;Zuo F .Enhanced microwave absorption in Ni/polyaniline nanocomposites by dual dielectric relaxations[J].Applied physics letters,2008(1):13127-1-13127-3-0.
[12] 陈晓燕,董发勤,杨玉山,郑凯.炭黑/碳纤维/ABS电磁屏蔽复合材料的制备及其性能研究[J].功能材料,2010(04):570-573.
[13] K. Lozano;L. Espinoza;K. Hernandez;A. R. Adhikari;G. Radhakrishnan;P. M. Adams .Investigation of the electromagnetic interference shielding of titanium carbide coated nanoreinforced liquid crystalline polymer[J].Journal of Applied Physics,2009(10):103511.1-103511.5.
[14] 王银存,李利军,马英辉,王小娟,卢美欢.细菌纤维素生产及应用研究进展[J].中国酿造,2011(04):20-23.
[15] 邱竣,周绍龙.细菌纤维素的研究和应用新进展[J].中国美容医学,2011(05):870-873.
[16] E. Zussman;X. Chen;W. Ding .Mechanical and structural characterization of electrospun PAN-derived carbon nanofibers[J].Carbon: An International Journal Sponsored by the American Carbon Society,2005(10):2175-2185.
[17] Jain M K;Abhiraman A S .Conversion of acrylonitrilebased precursor fibres to carbon fibres[J].Journal of Materials Science,1987,22(01):278-300.
[18] Maaroufi A;Flandrois S;Coulon C et al.Magnetic anisotropy of graphite and electronic energy band parameters[J].Physical and Chemistry of Solids,1982,43(12):1103-1109.
[19] Fichbach D B;Couzi M .Temperature dependence of Raman scattering by disordered carbon materials[J].Carbon,1986,24(03):365-369.
[20] Nakamizo M;Kammereck R;Walker P L .Laser Raman studies on carbons[J].Carbon,1974,12(03):259-267.
[21] Fitzer E;Rozploch F .Laser Raman spectroscopy for determination of C-C bonding length in carbon[J].Carbon,1988,26(04):594-595.
[22] Fitzer E;Rozploch F .Some remarks on Raman spectroscopy of carbon structures[J].High TempreturesHigh Pressures,1988,20(04):449-454.
[23] Joo J;Epstein A J .Electromagnetic radiation shielding by intrinsically conducting polymers[J].Applied Physics Letters,1994,65(18):2278-2279.
[24] 刘庆雷 .遗态功能复合材料的制备及电磁性能研究[D].上海交通大学,2009.
[25] Anil Ohlan;Kuldeep Singh;Amita Chandra;S. K. Dhawan .Microwave absorption properties of conducting polymer composite with barium ferrite nanoparticles in 12.4-18 GHz[J].Applied physics letters,2008(5):053114-1-053114-3-0.
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