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总结了各种炭材料作为电化学电容器电极材料的研究和开发现状,分析了炭材料的比表面积、孔分布、孔容、表面官能团、石墨微晶取向等特性,极化电极的制作工艺、电极密度、电极厚度、电极导电性以及附加准电容等电化学特性对电化学电容器性能的影响,着重介绍了近几年来用纳米碳管作电化学电容器极化电极所取得的进展,并展望了纳米碳管在这一领域应用的前景.

参考文献

[1] 戴贵平,刘敏,王茂章,成会明.电化学电容器中炭电极的研究及开发I. 电化学电容器[J].新型炭材料,2002(01):71-79.
[2] Kinoshita K.Carbon:Electrochemical and Physicochemical Properties[M].New York:Kodansa Press,1988
[3] Becker H J;Ferry V .Low voltage electrolytic capacitor[P].US:2800616,1957.
[4] Boos D;Heights G .Activated carbons for electrolytic capacitor[P].US 23536963,1970.
[5] Kaste B .Activated carbons used in double-layer capacitors[J].Journal of Electroanalytical Chemistry,1985,191:311.
[6] Shi H .Activated carbons and double layer capacitance[J].Electrochimica Acta,1996,41(10):1633-1639.
[7] Qu D;Shi H .Studies of activated carbons used in double-layer capacitors[J].Journal of Power Sources,1998,74:99-107.
[8] Sarangapani S.;Chen CP.;Tilak BV. .MATERIALS FOR ELECTROCHEMICAL CAPACITORS - THEORETICAL AND EXPERIMENTAL CONSTRAINTS [Review][J].Journal of the Electrochemical Society,1996(11):3791-3799.
[9] 西野敦 .活性炭素纤维を用ぃた电气二重层キャパシタ-炭素纤维を电子机能材料に应用展开[J].炭素(日本),1988(132):57-72.
[10] Urbaniczky C;Lundstrom K .The influence of paste composition in electrode capacity and kinetics[J].Journal of Electroanalytical Chemistry,1984,176:169-182.
[11] 松田好睛 .电气二重层キャパシタの材料と电气化学特性[J].机能材料(日本),1999,19(08):43-49.
[12] Ishikawa M;Sakamoto A;Morita M et al.Effect of treatment of activated carbon fiber cloth electrodes with cold plasma upon performance of electric double-layer capacitors[J].Journal of Power Sources,1996,60:233-238.
[13] 平冢和也;真田恭宏;森本刚 等.有机溶媒系电气二重层コンデンサ-用活性炭电极の特性评价[J].电气化学(日本),1991(59):607-613.
[14] Yoshida A;Tanahashi I;Nishino A .Effect of concentration of surface acidic functional groups on electric double-layer properties of activated carbon fibers[J].Carbon,1990,28(05):611-615.
[15] Nakamura M;Nakanishi M;Yamamoto K .Influence of physical properties of activated carbons on characteristics of electric double-layer capacitors[J].Journal of Power Sources,1996,60:225-231.
[16] Leon C A;Leon D;Radovic L R.Interfacial chemistry and electrochemistry of carbon surfaces[A].New York:Marcel Dekker,1994:258.
[17] 棚桥一郎;西野敦;吉田昭彦 等.多孔性カ-ボンを水蒸气赋活する方法[P].JP:60-149115
[18] 木屋义信;仓林研 .活性炭粉末をバルスで烧结させる方法[P].JP:特开平3-78221
[19] 田淦顺次 .电极用固体活性炭の开发と应用[J].化学经济(日本),1992,7(07):21-27.
[20] 齐藤贵之;仓田满义;横野嘉敏 等.ハイバワ-用电气二重层コンデンサ-の开发[J].NEC 技报/NEC Technical Journal,1994,47(10):91-97.
[21] 井上芳树;稻川昌子;齐藤贵之 等.高エネルギ-型大容量电气二重层キャパシタ[J].NEC 技报/NEC Technical Journal,1998,51(10):65-70.
[22] 三浦孝一;中川浩行.活性炭素纤维の高密度化とその电极材への应用[J].ケミカル*エンジニヤリング,1997(11):1-6.
[23] Miura K.;Okamoto H.;Nakagawa H. .Production of high density activated carbon fiber by a hot briquetting method[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(1):119-125.
[24] Yang K;Choi Y;KIM J.Preparation of pitch precursor and its application to electrical double layer capacitor[A].Berlin,2000:387-388.
[25] Zheng JP.;Jow TR.;Huang J. .THE LIMITATIONS OF ENERGY DENSITY FOR ELECTROCHEMICAL CAPACITORS[J].Journal of the Electrochemical Society,1997(6):2026-2031.
[26] 竹田敏和;远藤守信 .硫酸水溶液电气二重层キャパシタの开发と应用[J].炭素(日本),1999,189:179-187.
[27] Sato Y;Yomogida K;Kobayakawa K.Electrochemical behavior as capacitor materials of activated carbon loaded with ruthenium oxide[A].,1999:201-202.
[28] Conway B;Pell W;Liu T .Diagnostic analyses for mechanisms of self-discharge of electrochemical capacitors and batteries[J].Journal of Power Sources,1997,65:53-59.
[29] Boos D;Metcalfe J .Electrolytic capacitor employing paste electrodes[P].US 3634736,1972.
[30] Sanada K;Hosocawa M.Electric double-layer capacitor[J].NEC Research and Development,1979(55):21.
[31] 西野敦;吉田昭彦 .高比表面积を有する活性炭[J].科学と工業,1985,59(09):382.
[32] Nishino A .Capacitors:operating principlescurrent market and technical trends[J].Journal of Power Sources,1996,60:137-147.
[33] 森本刚 .用有机电解液を用ぃる电气二重层キャパシタ[J].炭素(日本),1999,189:188-196.
[34] Mayer S;Pekala R;Kaschmitter J .The aerocapacitor:an electrochemical double-layer energy storage device[J].Journal of the Electrochemical Society,1993,140:446-451.
[35] Bartsch M;Braun A;Schnyder B.Bipolar glassy carbon electrochemical double-layer capacitor:100000 cycles demonstrated[A].,1999:197-199.
[36] Miousse D;Gouerec P;Calas S.Effect of the temperature during the thermally induced phase separation step on the physical and electrochemical properties of PAN-based aerogels[A].,1999:207-209.
[37] GOUEREC P;Miousse D;Tran-Van F.Characterization of PAN based xerogel material for an application as double layer supercapacitors[A].,1999:203-206.
[38] Miller J;Dunn B;Tran T et al.Deposition of ruthenium nanoparticles on carbon aerogels for high energy density supercapacitor electrodes[J].Journal of the Electrochemical Society,1997,144:L309-L311.
[39] Duclaux L;Benoit R;Gibinski T.Use of carbon from nanocomposites for the storage of energy[A].USA:Charleston,1999:632-633.
[40] L. Diederich;E. Barborini;P. Piseri;A. Podesta;P. Milani;A. Schneuwly;R. Gallay .Supercapacitors based on nanostructured carbon electrodes grown by cluster-beam deposition[J].Applied physics letters,1999(17):2662-2664.
[41] Burke A .Ultracapacitors:whyhowand where is the technology[J].Journal of Power Sources,2000,91:37-50.
[42] Chunming Niu;Enid K. Sichel;Robert Hoch .High power electrochemical capacitors based on carbon nanotube electrodes[J].Applied physics letters,1997(9/12):1480-1482.
[43] E. Frackowiak;K. Metenier;V. Bertagna .Supercapacitor electrodes from multiwalled carbon nanotubes[J].Applied physics letters,2000(15):2421-2423.
[44] Frackowiak E;Jurewicz K;Delpeux S.Supercapacitors from carbon nanotubes[A].Berlin,2000:471-472.
[45] Jurewicz K.;Bertagna V.;Beguin F.;Frackowiak E.;Delpeux S. .Supercapacitors from nanotubes/polypyrrole composites[J].Chemical Physics Letters,2001(1/3):36-40.
[46] 马仁志,魏秉庆,徐才录,梁吉,吴德海.基于碳纳米管的超级电容器[J].中国科学E辑,2000(02):112-116.
[47] Ma R Z;Liang J;WEI B Q et al.Study of electrochemical capacitors utilizing carbon nanotube electrodes[J].Journal of Power Sources,1999,84:126-129.
[48] B. Zhang;J. Liang;C. L. Xu .Electric double-layer capacitors using carbon nanotube electrodes and organic electrolyte[J].Materials Letters,2001(6):539-542.
[49] An K H;Kim W S;Park Y S et al.Properties of high-power supercapacitors using single-walled carbon nanotube electrodes[J].Advanced in Functional Materials,2001,11:387-392.
[50] Soneda Y;Duclaux L;Bernier P.Applications of filaments and single-walled carbon nanotubes to electrochemical supercapacitors[A].Berlin,2000:1065-1066.
[51] Cheng HM.;Su G.;Pan HY.;He LL.;Sun X.;Dresselhaus MS.;Li F. .Large-scale and low-cost synthesis of single-walled carbon nanotubes by the catalytic pyrolysis of hydrocarbons[J].Applied physics letters,1998(25):3282-3284.
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