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螺旋形炭纤维的制备方法及其生长机制 被引量:1

Review on Preparation Methods and Growth Mechanism of Carbon Micro/nanocoils
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摘要 综述了近年来国内外螺旋形炭纤维的制备方法发展现状及其最新进展,详细介绍了采用镍基、铁基、铜基等催化剂制备螺旋形炭纤维的结构、形貌等特点,评述了催化制备螺旋形炭纤维的生长机理,并总结了螺旋形炭纤维的制备和生长机制存在的具体问题和应用前景。 Development and the most resent research of the preparation methods of carbon micro/nanocoils are introduced. The structure and morphology of carbon micro/nanocoils prepared with Ni, Fe, Cu, etc. as the catalysts are illustrated in detail. The growth mechanism of micro/nanocoils is reviewed. The issues existing about the preparation and growth mechanism of micro/nanocoils and future research trend are summarized.
出处 《人工晶体学报》 EI CAS CSCD 北大核心 2008年第6期1379-1384,1373,共7页 Journal of Synthetic Crystals
基金 陕西省自然基金(No.N6CS0005) 西北工业大学创新基金(No.07035)资助
关键词 螺旋形炭纤维 制备 生长机制 carbon micro/nanocoils preparation growth mechanism
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  • 1Vogt U. , Hofmann H. , Kramer V.. K. Eng. Mater. [J], 1994, 89: 29-33
  • 2Addamiano A.. J. Cryst. Growth[J], 1982, 58: 617-622
  • 3Okada Y. , Tabeuchi K. , Yamanashi H. et al.. J. Mater. Sci. Lett. [J], 1992, 11:1 715-1 717
  • 4Galuszka J., Back M. H.. C arbon[J], 1984, 22:141-145
  • 5Chen X. P. , Motojima S.. Carbon[J], 1999, 37:1 817-1 823
  • 6Kawaguchi M. , Nozaki K. , Motojima S. et al.. J. Cryst. Growth[J], 1992, 118:309-313
  • 7Baughman R. H. , Zakhidov A. A. , de-Heer W. A.. Science[Jl, 2002, 297:787-792
  • 8Amelinckx S. , Zhang X. B. , Bernaerts D. et al.. Science[J], 1994, 265:635-639
  • 9Ou-Yang Z. C. , Su Z. B. , Wang C. L.. Phys. Rev. Lett. [J], 1997, 78:4 055-4 058
  • 10Pan L. , Hayashida T. , Zhang M. et al.. Jpn. J. Appl. Phys. [J], 2001, 40:L235-L237

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  • 1A. I. Nikolaev,B. V. Peshnev,A. S. Ismail.Preparation of carbon nanofibers from electrocracking gas on an iron oxide catalyst[J]. Solid Fuel Chemistry . 2009 (1)
  • 2Lu W X,Sui Z J,Zhou J H,et al.Kinetically controlled synthesis ofcarbon nanofibers with different morphologies by catalytic COdisproportionation over iron catalyst. Chemical Engineering Science . 2010
  • 3Stadermann M,Sherlock S P,In J B,et al.Mechanism and kinetics ofgrowth termination in controlled chemical vapor deposition growth ofmultiwall carbon nanotube arrays. Nano Letters . 2009
  • 4Lu W X,Sui Z J,Zhou J H,et al.Effect of hydrogen on the synthesis ofcarbon nanofibers by CO disproportionation on ultrafine Fe3O4. Asia-Pacific Journal of Chemical Engineering . 2009
  • 5Baker R T K,Alonzo J R,Dumesic J A,et al.Effect of the surface stateof iron on filamentous carbon formation. Journal of Catalysis . 1982
  • 6Yu Z X,Chen D,Totdal B,et al.Effect of catalyst preparation on thecarbon nanotube growth rate. Catalysis Today . 2005
  • 7Audier M,Coulon M,Bonnetain L.Disproportionation of CO oniron-cobalt alloys-II kinetic study on iron-cobalt alloys of differentcompositions. Carbon . 1983
  • 8Chen X Q,Yang S,Motojima S.Morphology and growth models ofcircular and flat carbon coils obtained by the catalytic pyrolysis ofacetylene. Materials Letters . 2002
  • 9Chesnokov V V,Buyanov R A.The formation of carbon filaments upondecomposition of hydrocarbons catalysed by iron subgroup metals andtheir alloys. Russ Chem Rev . 2000
  • 10Chen D,Christensen K O,Ochoa-Fernandez E,et al.Synthesis ofcarbon nanofibers:effects of Ni crystal size during methanedecomposition. Journal of Catalysis . 2004

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