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Synthesis of Nanorods of Crystalline Co_3O_4 Using Carbon Nano-tubes as Templates 被引量:1

Synthesis of Nanorods of Crystalline Co_3O_4 Using Carbon Nano-tubes as Templates
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摘要 Synthesis of cobalt oxide (Co 3O 4) nanorods was achieved by templating against carbon nanotubes via wet chemical technique. The products with crystalline structure were mainly composed of Co 3O 4 nanorods with diameters in the range of ca . 75-100 nm and lengths in the range of 0.12-1 μm, and were characterized by XRD, TEM, SAED and HRTEM. Synthesis of cobalt oxide (Co 3O 4) nanorods was achieved by templating against carbon nanotubes via wet chemical technique. The products with crystalline structure were mainly composed of Co 3O 4 nanorods with diameters in the range of ca . 75-100 nm and lengths in the range of 0.12-1 μm, and were characterized by XRD, TEM, SAED and HRTEM.
出处 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2002年第6期610-613,共4页 中国化学(英文版)
基金 theNaturalScienceFoundationofAnhuiProvinceofChina (No .4 5 12 2 ) theEducationDepartmentofAnhuiProvinceofChina (No .2 0 0 1115ZD)
关键词 Co 3O 4 NANORODS carbon nanotubes Co 3O 4, nanorods, carbon nanotubes
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参考文献10

  • 1Yamaura,H,Tamaki,J,Moriya,K,Miura,N,Yamazoe,N. J .Electrochem.Soc . 1997
  • 2Okamoto,Y,Imanaka,T,Teranishi,S. Journal of Catalysis . 1980
  • 3Hutchins,M .G,Wright,P .J,Grebenik,P .D. Sol.EnergyMater . 1987
  • 4Li,Y .D,He,Y .P,Li,L .Q,Qian,Y .T. Chem.J .Chin.Univ . 1999
  • 5Verelst,M,Ely,T .O,Amiens,C,Snoeck,E,Lecante,P,Mosset,A,Respaud,M,Broto,J.M,Chaudret,B. Chemistry of Materials . 1999
  • 6Jeevanandam,P,Koltypin,Y,Gedanken,A,Mastai,Y. J .Mater.Chem . 2000
  • 7Cao,H .Q,Xu,Z,Wei,X .W,Ma,X,Xue,Z. Chemical Communications . 2001
  • 8Chen,Y .K,Chu,A,Cook,J,Green,M .L .H,Harris,P .J .F,Heesom,R,Humphries,M,Sloan,J,Tsang,S .C,Turner,J .F .C. J .Mater.Chem . 1997
  • 9Liu,B .C,Tang,S .H,Liang,Q,Gao,L .Z,Zhang,B .L,Qu,M .Z,Yu,Z .L. Chin.J .Chem . 2001
  • 10JointCommitteeonPowderDiffractionStandards.DiffractionDataFile,No 90418[]..1991

同被引文献25

  • 1Jinzhang Gao, Yanchun Zhao, Wu Yang, Jianniao Tian, Fei Guan. and Yongjun MaChemistry and Chemical Engineering College, Northwest Normal University, Lanzhou 730070, China.Sol-gel preparation and characterization of Co_3O_4 nanocrystals[J].Journal of University of Science and Technology Beijing,2003,10(1):54-57. 被引量:13
  • 2李普良,徐舜,习小明.锂离子电池正极材料LiCoO_2合成方法及其掺杂研究进展[J].矿冶工程,2004,24(1):84-88. 被引量:10
  • 3Funatus ciji, et al. Manufacture of Tricobalt Tetroxide for Lithium Secodary Battery Positive Electrode Material[P]. Japan Patent,08-096809.1996-04-12.
  • 4郭炳昆 李新海 杨松青.化学电源-电池原理及制造技术[M].长沙:中南工业大学出版社,2001..
  • 5孙思修 张卫民 杨延钊.Co3O4纳米粉体的制备方法[P].中国专利:1344682A.2002-04-17.
  • 6戴振华.Co3O4的制造方法[P].中国专利:1376638A.2002-10-30.
  • 7Masuda Minoru, et al. Tricobalt Tetroxide and Its Production[P]. Japan Patent, 11-292548.1999-10-26.
  • 8Svegl F. Characterization of Spinel Co3O4 and Li-doped Co3O4 Thin Film Electrocatalysts Prepared by the Sol-gel Route[J]. Electrochemica Acta,2000,45:4359-4371.
  • 9Yonghong Ni. A Simple Reducting-oxidation Route to Prepare Co3O4 Nanocrystals[J]. Materials Research Bulletin,2001,36:2383-2387.
  • 10Ji Feng. Size-controlled Growth of Co3O4 Nanocubes[J]. Chem Mater,2003,15:2829-2835.

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