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聚3-(4-氟苯)噻吩与偶联剂改性RuO_2复合材料的制备

Preparation of the composite of poly (3-(4-fluorophenyl)thiophene) and silance coupling agent modified RuO_2
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摘要 采用固体研磨法使RuCl3.xH2O与NaOH在室温下反应,产物在空气中200℃热处理3h后得到了RuO2颗粒。进而在室温下以硅烷偶联剂KH-550对RuO2颗粒进行表面改性,得到在氯仿中有良好分散性的改性RuO2颗粒。再将改性RuO2颗粒分散到3-(4-氟苯)噻吩(FPT)的氯仿溶液中,并以无水三氯化铁(FeCl3)为氧化剂,采用化学聚合法制备了PFPT/RuO2复合材料。对复合材料的结构与形貌进行了FT-IR、XRD、SEM等表征,并在0.5mol/L硫酸溶液中,用循环伏安(C-V)和恒电流充放电等测试研究了复合材料的电化学性质,结果表明,复合材料中RuO2的比容量可达390F/g。 Hydrous RuO_2 particles were obtained by mixing RuCl3·xH2O with sodium hydroxide in an agate mortar at room temperature and then annealed for 3h at 200℃ in air.The RuO_2 particle had an excellent dispersion in CHCl3 after surface modified by silance coupling agent(KH-550) at ambient temperature.The PFPT/RuO_2 composite were obtained via chemical polymerization of 3-(4-fluorophenyl)thiophene(FPT) with FeCl3 as oxidant when the modified RuO_2 particles were dispersed into the solution.The structure and morphology of the PFPT/RuO_2 composite material were characterized by FT-IR,SEM,XRD,et al.The electrochemical properties of PFPT/RuO_2 composite were investigated by cyclic voltammetry(C-V) and galvanostatic charge-discharge techniques in 0.5mol/L H2SO4.The results showed the specific capacitance of RuO_2 in the PFPT/RuO_2 composite material reached up to 390F/g.
出处 《功能材料》 EI CAS CSCD 北大核心 2010年第3期390-393,共4页 Journal of Functional Materials
基金 国家自然科学基金资助项目(20633040)
关键词 复合材料 聚3-(4-氟苯)噻吩 RUO2 表面改性 composite poly(3-(4-fluorophenyl)thiophene) RuO_2 surface modification
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  • 1张庆武,周啸.PFPT/CF复合材料及其在电化学电容器中的应用[J].电源技术,2004,28(8):487-490. 被引量:3
  • 2Villers Dominique, Jobin Donald, Soucy Chantal et al.. J. The Electrochemical Society[J], 2003, 150(6): A747-A752
  • 3Guerrero D. J., Ren X., Ferraris J. P.. Chem. Mater.[J], 1994, 6: 1 437-1 443
  • 4ZHANG Qing-Wu, Zhou Xiao, Yang Hong-Sheng. J. Power Sources[J], 2004, 125(1): 141-147
  • 5Rudge A., Davey J., Raistrick I. et al.. J. Power Sources[J], 1994, 47: 89-107
  • 6Ferraris J. P., Eissa M. M., Brotherston I. D. et al.. Chem. Mater.[J], 1998, 10: 3 528-3 535
  • 7FRACKOWIAK E, JUREWICZ K, DELPEUX S, et al. Nanotubular materials for supercapacitors[J]. J Power Sources, 2001, 97-98:822-825.
  • 8CHEN J H, HUANG Z P, WANG D Z, et al. Electrochemical synthesis of polypyrrole films over each of vell-aligned carbon nanotubes [J].Synthetic Metals, 2002, 125(3): 289-294.
  • 9KUDOH Y, NISHINO A. Recent development in electrolytic capacitors and electric double layer capacitors[J]. Electrochemistry, 2001, 69 (6):397-406.
  • 10SOUDAN P, HO H A, BR EAU L,et al. Chemical synthesis and electrochemical properties of poly (cyano-substituted-diheteroareneethylene) as conducting polymers for electrochemical supercapacitors[J].J Electrochemical Society, 2001, 148(7): A 775-A 782.

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