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采用浮动催化法,利用卧式单一高温电阻炉,在以无水乙醇为碳源的反应体系中通过改变催化剂、反应气氛及流量、添加剂等实验参数合成了形貌不一的碳微纳米材料;采用SEM和Raman对产物进行了形貌观察和表征;比较了这些实验参数对浮动催化法制备碳纳米管的影响,并对其作用机理进行了简单分析.

The carbon micro/nano-materials with different morphologies are synthesized in a single horizontal high-temperature resistance furnace by floating catalyst method with a reaction system using ethanol as the carbon source, through varying the experimental factors such as the types of the catalysts, the kinds and flow rates of the reaction gases and additives. SEM (scanning electron microscope) and Raman are introduced to observe and characterize these products. The effects and the corresponding effect mechanisms of the above experimental factors on the growth of the carbon nanotubes are compared and analyzed.

参考文献

[1] Lijima S .Helical microtubules of graphitic carbon[J].Nature,1991,354:56.
[2] Baughman R H et al.Carbon nanotubes-the route toward applications[J].Science,2003,297:787.
[3] 麦亚潘M.碳纳米管--科学与应用[M].北京:科学出版社,2007:183.
[4] Sun L F;Xie S S .Materials-creating the narrowest carbon nanotube[J].Nature,2000,403:384.
[5] Guo T.;Thess A.;Colbert DT.;Smalley RE.;Nikolaev P. .CATALYTIC GROWTH OF SINGLE-WALLED NANOTUBES BY LASER VAPORIZATION[J].Chemical Physics Letters,1995(1/2):49-54.
[6] Park JB.;Choi GS.;Cho YS.;Hong SY.;Kim D.;Choi SY.;Lee JH.;Cho KI. .Characterization of Fe-catalyzed carbon nanotubes grown by thermal chemical vapor deposition[J].Journal of Crystal Growth,2002(2):211-217.
[7] 吴德海,朱宏伟,张先锋,李延辉,韦进全,李雪松,郝东晖.碳纳米管的制备与应用[J].清华大学学报(自然科学版),2003(05):577-585,589.
[8] Cheng HM.;Su G.;Pan HY.;He LL.;Sun X.;Dresselhaus MS.;Li F. .Large-scale and low-cost synthesis of single-walled carbon nanotubes by the catalytic pyrolysis of hydrocarbons[J].Applied physics letters,1998(25):3282-3284.
[9] Andrews R;Jacques D;Rao A M et al.Continuous production of aligned carbon nanotubes:A step closer to commercial realization[J].Chemical Physics Letters,1999,303:467.
[10] 韦进全;张先锋;王昆林.碳纳米管宏观体[M].北京:清华大学出版社,2006:19.
[11] Li Y L et al.Systhesis of high purity single-walled carbon nanotubes from ethanol by catalytic gas flow CVD reaction[J].Nanotechnology,2007,18:225604.
[12] Deck C P;Vecchio K .Prediction of carbon nanotube growth success by the analysis of carbon-catalyst binary phase diagrams[J].Carbon,2006,44:267.
[13] Lupo F;Rodriguez-Manzo JA;Zamudio A;Elias AL;Kim YA;Hayashi T;Muramatsu M;Kamalakaran R;Terrones H;Endo M .Pyrolytic synthesis of long strands of large diameter single-walled carbon nanotubes at atmospheric pressure in the absence of sulphur and hydrogen[J].Chemical Physics Letters,2005(4-6):384-390.
[14] Chaisitsak S;Nukeaw J;Tuantranon T A .Parametric study of atmospheric-pressure single-walled carbon nanotubes growth by ferrocene-ehanol mist CVD[J].Diamond and Related Materials,2007,16:1958.
[15] Cassell A M et al.Large scale CVD synthesis of singlewalled carbon nanotubes[J].Journal of Physical Chemistry B,1999,103:6484.
[16] Horvath Z E et al.Inexpensive,upscalable nonotube growth methods[J].Current Applied Physics,2006,6:135.
[17] 慈立杰,魏秉庆,徐才录,梁吉,吴德海.硫对浮动催化法制备碳纳米管的影响[J].清华大学学报(自然科学版),2000(08):4-6,10.
[18] Tibbetts G G et al.Role of sulfur in the production of carbon fiber in the vapor phase[J].CARBON,1994,32:569.
[19] 朱宏伟;吴海德;徐才录.碳纳米管[M].北京:机械工业出版社,2003:85.
[20] 张兵,郭燕川,陈丽娟,彭必先.载气对注入CVD法制备碳纳米管和碳纳米纤维的影响[J].化学学报,2004(22):2253-2258.
[21] Singh C et al.Production of controlled architectures of aligned carbon nanotubes by an injection chemical vapor deposition method[J].CARBON,2003,41:359.
[22] Hate K J;Futaba D N;Mizuno K et al.Water-assisted highly efficient synthesis of impurity-free single-walled carbon nanotubes[J].Science,2004,306:1362.
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