微螺旋炭纤维因其特殊的三维手性结构,具有多种优异性能.综述了微螺旋炭纤维的微观形貌、力学性能、电性能、热性能、吸波性能和储气性能,并展望了螺旋炭纤维的应用前景,同时也总结了螺旋炭纤维研究中存在的问题.
参考文献
[1] | 郭燕川,徐海涛,张兵,韩凤梅,陈丽娟,彭必先,谢文委,钱海生,阎天堂,岳军,潘忠孝.新型酞菁高温热解沉积法制备燃料电池专用纳米碳球载铂催化剂[J].科学通报,2003(22):2338-2342. |
[2] | Fowler P W;Lazzeretti P;Zanasi R .Electric and magnetic properties of the aromatic sirty-carbon cage[J].Chemical Physics Letters,1990,165(01):79. |
[3] | Iiima S .Helical microtubules of graphitic carbon[J].Nature,1991,354:56. |
[4] | Davis W R;Slawson R J;Rigby G R .An unusual form of carbon[J].Nature,1953,171:756. |
[5] | Mao J M .Carbon nanotube formation on cobalt-implanted germanium substrate[J].Journal of Materials Science and Letters,1999,18:1151. |
[6] | Seiji Motojima;Shaoming Yang;Xiuqin Chen .Preparation and properties of SiC micro-coils by the vapor phase siliconizing of carbon micro-coils[J].Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization,2000(2):203-209. |
[7] | Chen X Q;Motojima S .Morphologies of carbon micro-coils grown by chemical vapor deposition[J].Journal of Materials Science,1999,34:5519. |
[8] | Motojima S;Chen Xiuqin .Three-demensional growth mechanism of cosmo-mimetie carbon microcoils obtained by chemical vapor deposition[J].Applied Physics A(Materials Science and Processing),1999,85(07):3919. |
[9] | Motojima S;Chen X;Iwanaga H;Yang S .Preparation and properties of TiC micro-coils and micro-tubes by the vapour phase titanizing of carbon micro-coils[J].Journal of Materials Science,1999(24):5989-5994. |
[10] | Zhang H F;Wang C M;Wang L S .Helical crystalline SiC/SiO2 core-shell nanowires[J].NANO LETTERS,2002,2:941. |
[11] | Motojima S.;Kasemura T.;Takeuchi S.;Iwanaga H.;Asakura S. .CATALYTIC EFFECTS OF METAL CARBIDES, OXIDES AND NI SINGLE CRYSTAL ON THE VAPOR GROWTH OF MICRO-COILED CARBON FIBERS[J].Carbon: An International Journal Sponsored by the American Carbon Society,1996(3):289-296. |
[12] | Kaneto K;Tsuruta M;Motojima S .Electrical properties of carbon micro coils[J].Synthetic Metals,1999,103(03):2578. |
[13] | Motojima S;Chen X;Yang S et al.Properties and potential applications of carbon microcoils/nanocoils[J].Diamond and Related Materials,2004,13(11-12):1989. |
[14] | 李峰,杜金红,白朔,成会明.螺旋炭纤维的结构分析[J].材料研究学报,2004(02):113-118. |
[15] | 吴法宇,杜金红,刘辰光,李莉香,成会明.螺旋炭纤维的微观结构与储能特性[J].新型炭材料,2004(02):81-86. |
[16] | Kazuyoshi Shibagaki;Seiji Motojima;Yasuhiro Umemoto;Yoshihiro Nishitani .Outermost surface microstructure of as-grown,heat-treated and partially oxidized carbon microcoils[J].Carbon: An International Journal Sponsored by the American Carbon Society,2001(9):1337-1342. |
[17] | Yang S;Chen X;Hasegawa M.Conformations of super-elastic earbon micro/nano-springs and their propertles[A].,2004 |
[18] | Motojima S;Iwanaga H;Hashishin T.Preparation of carbon microcoils/nanocoils and ceramic microcoils and their properties[A].,2002:1. |
[19] | In-Hwang W.;Iwanaga H.;Motojima S.;Kuzuya T. .Oxidation characteristics of the graphite micro-coils, and growth mechanism of the carbon coils[J].Journal of Materials Science,2001(4):971-978. |
[20] | Shibagaki Kazuyoshi .Surface properties of carbon micro-coils oxidized by a low concentration of oxygen gas[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(15):2087-2093. |
[21] | Shibagaki K.;Motojima S. .Thermal behavior and effect of heat treatment in an inert gas on oxidized carbon microcoils[J].Carbon: An International Journal Sponsored by the American Carbon Society,2001(3):411-417. |
[22] | 赵东林,沈曾民.螺旋形手征碳纤维的微波介电特性[J].无机材料学报,2003(05):1057-1062. |
[23] | 赵东林,沈曾民,迟伟东.炭纤维及其复合材料的吸波性能和吸波机理[J].新型炭材料,2001(02):66-72. |
[24] | Motojima S;Hoshiya S;Hishikawa Y .Electromagnetic wave absorption properties of carbon microcoils/PMMA composite beads in W bands[J].CARBON,2003,41:2653. |
[25] | 陈秀琴,元岛栖二.微旋管状碳纤维的微细构造和表面特性[J].材料导报,2000(09):56-59. |
[26] | Furuya Y;Hashishin T;Iwanaga H et al.Interaction of hydrogen with carbon coils at low temperature[J].CARBON,2004,42:331. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%