期刊文献+

Polyaniline and multi-walled carbon nanotube composite electrode for rechargeable battery 被引量:2

Polyaniline and multi-walled carbon nanotube composite electrode for rechargeable battery
下载PDF
导出
摘要 The multi-walled carbon nanotube was introduced into the polymer matrix (PANI) to improve the electric conductivity as well as mechanical properties of the original polymer matrix.PANI/multi-walled carbon nanotube (MWCNT) composites were synthesized via ex-situ and in-situ polymerization to improve their electrical property.And the DC conductivities of PANI/MWCNT according to content and diameter of MWCNT were measured by four-point probe.The highest electric conductivity of PANI/MWCNT composite is 20 S/cm when 0.3% (mass fraction) MWCNTs with 10 nm in diameter and 15 μm in length are added in composite. The multi-walled carbon nanotube was introduced into the polymer matrix (PANI) to improve the electric conductivity as well as mechanical properties of the original polymer matrix.PANI/multi-walled carbon nanotube (MWCNT) composites were synthesized via ex-situ and in-situ polymerization to improve their electrical property.And the DC conductivities of PANI/MWCNT according to content and diameter of MWCNT were measured by four-point probe.The highest electric conductivity of PANI/MWCNT composite is 20 S/cm when 0.3% (mass fraction) MWCNTs with 10 nm in diameter and 15 μm in length are added in composite.
出处 《中国有色金属学会会刊:英文版》 CSCD 2012年第S3期717-721,共5页 Transactions of Nonferrous Metals Society of China
基金 project(2012-0007594)supported by Basic Science Research Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Education,Science and Technology
关键词 POLYMER ELECTRODE electric CONDUCTIVITY multi-walled carbon NANOTUBE CONDUCTING POLYMER polymer electrode electric conductivity multi-walled carbon nanotube conducting polymer
  • 相关文献

参考文献17

  • 1M. I. SANCHEZ DE PINTO,H. T. MISHIMA,B. A. LO′PEZ DE MISHIMA.Polymers and copolymers of pyrrole and thiophene as electrodes in lithium cells[J]. Journal of Applied Electrochemistry . 1997 (7)
  • 2Wagner HD,Lourie O,Feldman Y,et al.Stress-induced fragmentation of multiwall carbon nanotubes in a polymer matrix. Applied Physics . 1998
  • 3Qian D,dickey E C,Andrews R,et al.Load transfer and deformation mechanisms in carbon-polystyrene composites. Applied Physics . 2000
  • 4Chen R J,Zhang Y G,Wang D W,et al.Noncovalent Sidewall Functionalization of Single-Walled Carbon Nanotubes for Protein Immobilization. Journal of the American Chemical Society . 2001
  • 5Kim B J,Oh S G,Han M G,et al.Synthesis and characterization of polyaniline nanoparticles in SDS micellar solutions. Synthetic Metals . 2001
  • 6Tans S J,Verschueren A,Dekker C.Room-temperature transistor based on a single carbon nanotube. Nature . 1988
  • 7Li J X,Hui Z,Zhou L,et al.Aniline-based polyorganodisulfide redox system of high energy for secondary lithium batteries. Electrochemistry . 2004
  • 8Karami H,Mousavi M F,Shmsipur M.A novel dry bi-polar rechargeble battery based on polyaniline. JPower Sources . 2003
  • 9MACDIARMID A G,MU S L,SOMASIRI N L D,WU W.Polyaniline:A cathode-active material for rechargeable aqueous batteries. Electrochem Soc Fall Meeting . 1984
  • 10NULI Y,GUO Z,LIU H,YANG J.A new class of cathode materials for rechargeable magnesium batteries:Organosulfur compounds based on sulfur-sulfur bonds. Electrochemistry Communications . 2007

同被引文献38

  • 1HE Peng,Lü Xiao-chun,LIN Tie-song,LI Hai-xin,AN Jing,MA Xin,FENG Ji-cai,ZHANG Yan,LI Qi,QIAN Yi-yu.Improvement of mechanical properties of Sn-58Bi alloy with multi-walled carbon nanotubes[J].中国有色金属学会会刊:英文版,2012,22(S3):692-696. 被引量:5
  • 2IIJ1MA S. Helical microtubes of graphitic carbon [J]. Nature, 1991, 354: 56-58.
  • 3KANG J L, NASH P, LI J J, SHI C S, ZHAO N Q. Achieving highly dispersed nanofibres at high loading in carbon nanofibre-metal composites [J]. Nanotechnology, 2009, 20: 235607-235613.
  • 4BAUHOFER W, KOVACS J Z. A review and analysis of electrical percolation in carbon nanotube polymer composites [J]. Composites Science and Technology, 2009, 69: 1486-1498.
  • 5CHO J, BOCCACCINI A R, SHAFFER M S P. Ceramic matrix composites containing carbon nanotubes [J]. Journal of Materials Science, 2009, 44: 1934-1951.
  • 6MORSI K, ESAWI A M K, LANKA S, SAYED A, TAHER M. Spark plasma extrusion (SPE) of ball-milled aluminum and carbon nanotube reinforced aluminum composite powders [J]. Composites Part A, 2010, 41: 322-326.
  • 7LI Q H, ZHOU Q H, DENG D, YU Q Z, GU L, GONG K D, XU K H. Enhanced thermal and electrical properties of poly (D,L-lactide)/ multi-walled carbon nanotubes composites by in-situ polymerization [J]. Transactions of Nonferrous Metals Society of China, 2013, 23: 1421-1427.
  • 8RUL S, LEFEVRE-SCHL1CK F, CAPRIA E, LAURENT C, PEIGNEY A. Percolation of single-walled carbon nanotubes in ceramic matrix nanocomposites [J]. Acta Materialia, 2004, 52: 1061-1067.
  • 9BALANI K, ZHANG T, KARAKOTI A, LI W Z, SEAL S, AGARWAL A. In situ carbon nanotube reinforcements in a plasma-sprayed aluminum oxide nanocomposite coating [J]. Acta Materialia, 2008, 56: 571-579.
  • 10HECN, ZHAONQ, SHICS, DUXW, LIJJ, LIHP, CUIQR. An approach to obtaining homogeneously dispersed carbon nanotubes in AI powders for preparing reinforced Al-matrix composites [J]. Advanced Materials, 2007, 19:1128-1132.

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部