超级电容器高的电能储存密度以及长的使用寿命引起了世界范围内的关注.通过参考和整理当前超级电容器的研究进展,介绍了两大类超级电容器的原理、主要性能、目前的发展情况和特点.同时,总结了改善和提高超级电容器储能密度的各种材料的选取、制备工艺和途径.在此基础上,认为电化学超级电容器比电介质超级电容器具有更大的储能密度及市场前景.然而,由于电介质超级电容器的独特性能,其在一些电子电气设备、元器件的应用中具有不可替代的作用,值得深入研究.
参考文献
[1] | 王永刚 .高比能量电化学电容器的研究[D].复旦大学,2007. |
[2] | 张晓帅 .反铁电储能材料[D].天津大学,2008. |
[3] | Gurunathan K;Vadivel Murugan A et al.Electrochemically synthesised conducting polymeric materials for applications towards technology in electronics,optoelectronics and energv storage devices[J].Mater Chem Phvs,1999,61:173. |
[4] | 黄佳佳,张勇,陈继春.高储能密度介电材料的研究进展[J].材料导报,2009(z2):307-312,321. |
[5] | Gamby J;Taberna P L et al.Studies and characterizations of various activated carbons used for carbon/carbon supercapacitors[J].Journal of Power Sources,2001,101:109. |
[6] | Celzard A;Collas F et al.Porous electrodes-based double-layer supercapacitor:Pore structure versus series resistance[J].Journal of Power Sources,2002,108:153. |
[7] | Probstle H;Schmitt C et al.Button cell supercapacitors with monolithic carbon aerogels[J].Journal of Power Sources,2002,105:189. |
[8] | Zheng JP.;Jow TR.;Cygan PJ. .HYDROUS RUTHENIUM OXIDE AS AN ELECTRODE MATERIAL FOR ELECTROCHEMICAL CAPACITORS[J].Journal of the Electrochemical Society,1995(8):2699-2703. |
[9] | Zhou Xin.Polyvinylidene fluoride based polymeric dielectrics for high energy density capacitor application[A].黑龙江哈尔滨,2009:15. |
[10] | Burn I;Smyth D M .Energy storage in ceramic dielectrics[J].Journal of Materials Science,1972,7:339. |
[11] | Qingmeng Zhang;Lei Wang;Jun Luo .Improved Energy Storage Density in Barium Strontium Titanate by Addition of BaO-SiO_2-B_2O_3 Glass[J].Journal of the American Ceramic Society,2009(8):1871-1873. |
[12] | Dong G H;Ma S W et al.Dielectric properties and energy storage density in ZnO-doped Ba0.3 Sr0.7 TiO3 ceramics[J].Ceramics International,2009,35:2069. |
[13] | Hao Xihong;Zhai Jiwei;Yao Xi .Improved energy storage performance and fatigue endurance of Sr-doped PbZrO3 antiferroelectric thin film[J].Journal of the American Ceramic Society,2009,92(05):1133. |
[14] | 杜军,唐群,罗君,董桂霞.Pb2Nb2O7-NaNbO3-SiO2纳米复合材料的制备及其介电性能[J].中国有色金属学报,2008(02):301-306. |
[15] | 宋占永,董桂霞,杨志民,马舒旺.陶瓷薄片的流延成型工艺概述[J].材料导报,2009(09):43-46. |
[16] | Gorzkowski E P;Pan M J et al.Glass-ceramics of barium strontium titanate for high energydensity capacitors[J].Journal of the Electrochemical Society,2007,18:269. |
[17] | Mao Changhui;Sun Xudong et al.Preparation and dielectric properties of Nb2O5-BaO-Na2O-SiO2 glass-ceramic for energy storage capacitors[J].Journal of Physics,2009,152:012061. |
[18] | Yuan Jinkai;Dang Zhimin et al.Fabrication and dielectric properties of advanced high permittivity polyaniline/poly(vinylidene fluoride) nanohybrid films with high energy storage density[J].Journal of Materials Chemistry,2010,20:2441. |
[19] | Zhou X;Zhao X H et al.Electrical breakdown and ultra-high electrical energy density in poly(vinylidene fluoride-hexafluoropropylene) copolymer[J].Applied Physics Letters,2009,94:162901. |
[20] | Chu Baojin;Zhou Xin et al.A dielectric polymer with high electric energy density and fast discharge speed[J].Science,2006,313:334. |
[21] | Zhang, ZC;Meng, QJ;Chung, TCM .Energy storage study of ferroelectric poly(vinylidene fluoride-trifluoroethylene-chlorotrifluoroethylene) terpolymers[J].Polymer,2009(2):707-715. |
[22] | Junjun Li;Sang II Seok;Baojin Chu;Fatih Dogan;Qiming Zhang;Qing Wang .Nanocomposites Of Ferroelectric Polymers With Tio_2 Nanoparticles Exhibiting Significantly Enhanced Electrical Energy Density[J].Advanced Materials,2009(2):217-221. |
[23] | Kim Ph;Jones S C et al.Phosphonic acid-modified barium titanate polymer nanocomposites with high permittivity and dielectric strength[J].Advanced Materials,2007,19:1001. |
[24] | Li K C;Wang H et al.Surface functionalized Ba0.6 Sr0.4-TiO3/poly(vinylidene fluoride) nanocomposites with significantly enhanced dielectric properties[J].Applied Physics Letters,2009,95:202904. |
[25] | Li J J;Claude J et al.Electrical energy storage in ferroelectric polymer nanocomposites containing surface-functionalized BaTiO3 nanoparticles[J].Chemistry of Materials,2008,20:6304. |
[26] | Dou X L;Liu X L et al.Improved dielectric strength of barium titanate-polyvinylidene fluoride nanocomposite[J].Applied Physics Letters,2009,95:132904. |
[27] | Jiang, SL;Yu, Y;Zeng, YK .Novel Ag-BaTiO3/PVDF three-component nanocomposites with high energy density and the influence of nano-Ag on the dielectric properties[J].Current applied physics: the official journal of the Korean Physical Society,2009(5):956-959. |
[28] | Bai Y;Cheng Z Y et al.High-dielectric-constant ceramic-powder polymer composites[J].Applied Physics Letters,2000,76:3804. |
[29] | Dean R;Walter C .Utilization of poly(ethylene terephthalate) plastic and composition-modified barium titanate powders in a matrlx that allows polarization and the use of integrated-circuit technologies for the production of light weight ultra high electrical energy storage untits(EESU)[P].US 7466536 B1,2008. |
[30] | Nicholas J. Smith;Badri Rangarajan;Michael T. Lanagan;Carlo G. Pantano .Alkali-free glass as a high energy density dielectric material[J].Materials Letters,2009(15):1245-1248. |
[31] | 杨盛毅,文方.超级电容器综述[J].现代机械,2009(04):82-84. |
[32] | 张治安,邓梅根,胡永达,杨邦朝.电化学电容器的特点及应用[J].电子元件与材料,2003(11):1-5. |
[33] | 张步涵,王云玲,曾杰.超级电容器储能技术及其应用[J].水电能源科学,2006(05):50-52. |
[34] | 牧伟芳,蔡克迪,金振兴,张庆国.超级电容器的应用与展望[J].炭素,2010(01):42-45,37. |
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