欢迎登录材料期刊网

材料期刊网

高级检索

以甲苯为碳源,二茂铁为催化剂,噻吩为生长促进剂,通过化学气相沉积方法得到了多分叉结构的炭.借助SEM、XRD和EDX考察了硫元素对产物的形貌和微观结构的影响.结果表明,当甲苯中的噻吩体积分数在0.01%~1%变化时,产物形貌由树状逐渐衍变为分支状.树状炭南较长而笔直的多分叉炭纤维构成,而分支状炭则由较短且弯曲的炭纤维构成.XRD结果表明硫元素对产物的微观结构没有明显的影响.

Branched carbon structures were formed by a chemical vapor deposition of toluene using ferrocene as a catalyst precursor and thiophene as a promoter. The effects of sulfur on the carbon products were investigated by SEM, XRD, and EDX. Results show that the product microstructure changes from tree-like to worm-like when the thiophene volume fraction in the toluene increases from 0.01 to 1%. The carbon trees consist of long, straight, and well-developed branches, while the worm carbons are composed of short and curled fibers. There is no obvious difference in d002, La and Lc for the two products.

参考文献

[1] Katsuid H;Matsunaga K;Egashira M et al.Formation of carbon fibers from naphthalene on some sulfur-containing substrates[J].CARBON,1981,19:148-150.
[2] Egashira M;Katsuki H;Ogawa Y et al.Whiskerization of carbon beads by vapor phase growth of carbon fibers to obtain sea urchin-type particles[J].CARBON,1983,21:89-92.
[3] Kawaguchi M;Nozaki K;Motojima S .A growth mechanism of regularly coiled carbon fibers through acetylene pyrolysis[J].Journal of Crystal Growth,1992,118:309-313.
[4] Chen X;Motojima S .The growth patterns and morphologies of carbon micro-coils produced by chemical vapor deposition[J].Carbon,1999,37:1817-1823.
[5] Fan YY.;Wei YL.;Su G.;Shen ZH.;Cheng HM. .Tailoring the diameters of vapor-grown carbon nanofibers[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(6):921-927.
[6] Ci LJ.;Rao ZL.;Zhou ZP.;Tang DS.;Yan YQ.;Liang YX.;Liu DF.;Yuan HJ. Zhou WY.;Wang G.;Liu W.;Xie SS. .Double wall carbon nanotubes promoted by sulfur in a floating iron catalyst CVD system[J].Chemical Physics Letters,2002(1/2):63-67.
[7] Zhenping Zhou;Lijie Ci;Xihua Chen;Dongsheng Tang;Xiaoqin Yan;Dongfang Liu;Yingxin Liang;Huajun Yuan;Weiya Zhou;Gang Wang;Sishen Xie .Controllable growth of double wall carbon nanotubes in a floating catalytic system[J].Carbon: An International Journal Sponsored by the American Carbon Society,2003(2):337-342.
[8] Guo X Y .Macroscopic muM-branched carbon trees generated from chemical vapor deposition of toluene[J].Carbon,2005,43:1098-1100.
[9] Ma H L;Su D S;Klein-Hoffmann A et al.Morphologies and microstructures of tree-like carbon at different reaction conditions in a CVD process[J].Carbon,2006,44:2254-2260.
[10] Hai-Long Ma;Dang Sheng Su;Guo-Qiang Jin .The influence of formation conditions on the growth and morphology of carbon trees[J].Carbon: An International Journal Sponsored by the American Carbon Society,2007(8):1622-1627.
[11] Baker R T K .Catalytic growth of carbon filaments[J].Carbon,1989,27:315-323.
[12] Fu S;Zhou B;Lung C .On the pull-out of fibers with fractaltree structure and the interference of strength and fracture toughness of composites[J].Smart Materials and Structures,1992,1:180-185.
[13] Shi Y F;Quan H J;Zbeng G B et al.Branched carbon nanofibers synthesized by an improved floating catalytic method[J].Journal of Materials Science,2004,39:1495-1497.
[14] Kim M S;Rodriguez N M;Baker R T K .The interplay between sulfur adsorption and carbon deposition on cobalt catalysts[J].Journal of Catalysis,1993,143:449-463.
[15] Owens W T;Rodriguez N M;Baker R T K .Effect of sulfur on the interaction of nickel with ethylene[J].Catalysis Today,1994,21:3-22.
[16] Tibbetts G G;Bernardo C A;Gorkiewicz D W et al.Role of sulfur in the production of carbon fibers in the vapor phase[J].CARBON,1994,32:569-576.
[17] Witten T A;Sander L M .Diffusion-limited aggregation,a kinetic critical phenomenon[J].Physical Review Letters,1981,47:1400-1403.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%