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1. 陳元杰, 廖秋峰超高容量電容及電池混合店員模組之應。 工業材料雜誌 178 期 p100~106, 90 年 10 月.

2. B.E.Conway. 1990, Transition from “Supercapacitor” to “Battery” Behavior in Electrochemical Energy Storage. Power Sources Symposium, 1990, Proceedings of the 34th International, 25-28 June 1990 Page(s): 319 -327, IEEE.

3. F. Gagliardi, M. Pagano. Experimental Results of on-board Battery-Ultracapacitor System for Electric Vehicle Applications. Industrial Electronics, 2002. ISIE 2002.

Proceedings of the 2002 IEEE International Symposium on, Volume: 1, 8-11 July 2002 Page(s): 93 -98 vol.1, IEEE 2002.

4. B.E.Conway. Electrochemical Supercapacitors Scientific Fundamentals and Technological Applications. New York: Plenum Press, 1999.

5. 朱宏傳、吳德海、徐才祿, 碳奈米管, 機械工業出版社,2003。

6. B.E.Conway 著, 陳艾、吳孟強、張緒禮、高能武 等譯. 電化學超級電容器-科學 原理及技術應用,

7. 高志勇、陳耿陽、吳富其、江萬爵, 賴志坤超高電容器製程技術簡介. 工業材料 雜誌166 期 p113~119,89 年 10 月。

8. Sanada S., Hasokawa M., NEC Research and Development. 1979, 55, p22~27.

9. S.Sarangapani, B.V.Tilak and C.-P.Chen. Materials for Electrochemical Capacitors.

Journal of the Electrochemical Society, 143 (11) A3791-A3799 (1996).

10. N.Khan, N.Marium, M.Zaki and L.Dinesh. Transient Analysis of Pulsed Charging in Supercapacitors. TENCON 2000. Proceedings, Volume: 3, 24-27 Sept. 2000 Page

(s): 193 -199 vol.3, IEEE 2000.

11. M.F.Rose and S.A.Merryman. Electrochemical Capacitor Technology for Actuator

Applications. Energy Conversion Engineering Conference, 1996. IECEC 96.

Proceedings of the 31st Intersociety, Volume: 1, 11-16 Aug. 1996 Page(s): 245 -250 vol.1. 1996 IEEE.

12. Stephen M.Lipka. Electrochemical Capacitors Utilizing Low Surface Area Carbon Fiber. IEEE AES Systems Magazine, July 1997.

13. 陳慶洪、柯澤豪、簡鴻裕、林世偉、蘇庭頤,碳化處理對以 Phenolic 系活性碳纖 維布製程電雙層電容器之影響。2002 年材料年會 PE-1。

14. 侯天益、周惠育、劉安民、羅法聖、翁炳志、吳宗明,超高電容研製 中山科學 研究院材料暨光電研究所,2002 年材料年會 PE-8。

15. F.Belhachemi, S.Rael, B.Davat. A Physical Based Model of Power Electric Double-Layer Supercapacitors. Industry Applications Conference, 2000. Conference Record of the 2000 IEEE, Volume: 5, 8-12 Oct. 2000 Page(s): 3069 -3076 vol.5, IEEE 2000.

16. 黃孟娟、張榮錡,釕氧化物超高電容材料特性簡介 工業材料雜誌 182 期 p120~128,91 年 2 月。

17. C.Arbizzani, M.Mastragostino, F.soavi.New Trends in Electrochemical Supercapacitors. Journal of Power Sources 110 164-170(2001).

18. K.Rajendra Prasad, N.Munichandriah. Fabrication and Evaluation of 450 F Electrochemical Redox Supercapacitors Using Inexpensive and High-Performance, Polyaniline Coated, stainless-Steel Electrodes. Journal of Power Sources 112 443-451(2002).

19. Agata Michalska, Krzysztof Maksymiuk. The Specific Influence of Hydrogen Ions on Poly (Pyrrole) Potentionmetry. Electrochimical Acta 44 2125-2129(1999).

20. Klaus-Michael Mangold, Konrad Morgenschweis, Klaus Jüttner. Relaxation of Polythiophenes Bridged by Alkyl Chains. Electrochimica Acta 44 1865-1869 (1999).

21. Chi-Chang Hu and Xi-Xun Lin. Ideally Capacitive Behavior and X-Ray Photoelectron Spectroscopy Characterization of Polypyrrole, Effects of Polymerization Temperatures and Thickness/Coverage. Journal of Electrochemical Society 149 (8) A1049-A1057

(2002).

22. Jim P.Zheng. Ruthenium Oxide-Carbon Composite Electrodes for Electrochemical Capacitors. Electrochemical and Solid-State Letters, 2 (8) 359-361(1999).

23. J.P.Zheng, P.J.Cygan, and T.R.Jow. Hydrous Ruthenium Oxide as an Electrode Material for Electrochemiacl Capacitors. Journal of the Electrochemical Society, Vol.142, No. 8, August (1995).

24. Miller J.M, Dunn B, Tran T.D, Pekala R.W. Deposition of Ruthenium Nanoparticles on Carbon Aergels for High energy Density Supercapacitor electrodes. Journal of Electrochemical Society, 144 (12), 309~311(1997).

25. Miller J.M, Dunn B. Morphology and Electrochemistry of Rutheninm/Carbon Aerogel Nanostructures. Langmuir, 15 (3)(1999).

26. Lin C, Ritter J.A, Popov B.N. Development of Carbon-Metal Oxide Supercapacitors from Sol-gel Derived Carbon-Rntheninm Xerogels. Journal of Electrochemical Society, 146 (9)(1999).

27. 薛立人,超高電容器的應用深遠弘廣。工業材料 128 期 p133~137,86 年 8 月。

28. 薛立人,電池特刊-超高電容器。工業材料 146 期 p73,p74,88 年 2 月。

29. 劉淑芬,埋入式電容材料技術之發展趨勢。工業材料 200 期,p104~117,92 年 8 月。

30. 陳孟暉、劉淑芬,埋入式電阻材料技術之發展。工業材料 200 期,p118~123,92 年8 月。

31. Aurelien Du Pasquier, Irene Plitz, John Gural, Serafin Menocal, Glenn Amatucci.

Characteristics and Performance of 500 F Asymmetric Hybird Advanced

Supercapacitor Prototypes. Journal of Power Sources 113 62-71(2003).

32. High-Pulse Power needs spur demand for Supercapacitor. Electronic Engineering Times, p99, p108, p110, April 16, 2001.

33. Carbon Foam Whips up Greater Power Density for Supercapacitor. Electronic Design, April 3, 2000.

34. Super Supercapacitor. Technology Review, p18, October 2002.

35. New Shape Flattens Supercaps In Low-Profile Applications. Electronic Design, p34, December 23, 2002.

36. Supercaps Take Aim at Pulse Power. Electronic Engineering Times, p91, p102, p104, June 3, 2002.

37. Replacing Energy Storage with Carbon Aerogel Supercapacitors. Power Electronic Technology, p32, p33, February 2003.

38. Supercaps for Supercaches. EDN Europe, January 2003, P16~P22.

39. Oh Joong Kwon, Seung Hwan Cha, Jae Jeong Kim. Ruthenium Bottom Electrode Prepared by Electroplating for a High Density DRAM capacitor. Journal of the Electrochemical Society, 151 (2) C127-C132 (2004).

40. Makoto Ue, Kazuhiko Ida, and Shoichiro Mori. Electrochemical Properties of Organic Liquid Electrolytes Based on Quaternary Onium Salts for Electrical Double-Layer Capacitors. Journal of the Electrochemical Society, 141 (11) A2989-A2996 (1994).

41. 黃震宇、蔡麗端,固態電解電容器因及材料之近期發展。工業材料 254 期,P63~69,

97 年 2 月。

42. V. Birss, R. Myers, H. Angerstein-Kozlowska, and B. E. Conway. Electron Microscopy Study of Formation of Thick Oxide Films on Ir and Ru Electrodes. Journal of Electrochemical Society, 131 (7) A1502-A1510 (1984).

43. 黃耀煌、胡啟章,循環伏安法製備含水釕氧化物於電化學電容器之應用, 國立

中正大學化學工程研究所87 年碩士論文。

44. 江鴻儒、胡啟章,循環伏安及電鍍法製備釕電極在電化學電容器的應用, 國立 中正大學化學工程研究所89 年碩士論文。

45. 陳奕勳、胡啟章,循環伏安製備錳-鎳氧化物於電化學電容器的應用,2002 年材 料年會 PE-1。

46. 李明宗,林中魁循環伏安法製備氧化釕薄膜之特性研究,私立逢甲大學材料科學 研究所91 年碩士論文。

47. 張光揮、胡啟章,循環伏安法製備含水釕銥氧化物於電化學電容器之應用,國立 中正大學化學工程研究所88 年碩士論文。

48. 王振慶、胡啟章,活性碳披覆釕氧化物電極於電化學電容器的應用,2002 年材料 年會 PE-5。

49. 李明宗、張六文、陳志雄、林中魁,氧化釕薄膜衝放電機構之 X 光吸收與光電子 能譜研究,2002 年材料年會 PE-17。

50. Chi-Chang Hu, Yao-Huang Huang. Effects of Preparation Variables on the Deposition Rate and Physicochemical Properties of Hydrous Ruthenium Oxide for Electrochemical Capacitors. Electrochimica Acta 46 3431-3444.(2001)

51. V.Horvat-Radosevic, K.Kvastek, M.Vukovic, D.Cukman. Electrochemical Properties of Ruthenised Electrodes in The Oxide Layer Region. Journal of Electrochemical Chemistry 482 188-201(2000).

52. Ⅱ-Hwan Kim and Kwang-Bum Kim. Ruthenium Oxide Thin Film Electrodes for Supercapacitors. Electrochemical and Solid-State Letters, 4 (5) A62-A64 (2001).

53. Jong-in Hong ,In-Hyeong Yeo, and Woon-kie Paik. Conducting Polymer with Metal Oxide for Electrochemical Capacitor Poly (3, 4-ethylenedioxythiophene) RuOx

Electrode. Journal of Electrochemical Society 148 (2) A156-A163 (2001).

54. T.U.Jeong and A.Manthiram. Amorphous Ruthenium-Chromium Oxides for

Electrochemical Capacitors. Electrochemical and Solid-State Letters, 3 (5) 205-208

(2000).

55. Manikandan Ramani, Bala S.Haran, Ralph E.White, and Branko N.Popov. Synthesis and Characterization of Hydrous Ruthenium Oxide-Carbon Supercapacitors. Journal of the Electrochemical Society, 148 (4) A374-A380 (2001).

56. Suk-Fun Chin, Suh-Cem Pang, and Marc A.Anderson. Material and Electrochemical Characterization of Tetrapropylammonium Manganese Oxide Thin Films as Novel Electrode Materials for Electrochemical Capacitors. Journal of the Electrochemical Society, 149 (4) A379-A384 (2002).

57. Chi-Chang Hu, Yao-Huang Huang, Kwang-Huei Chang. Annealing Effects on the Physicochemical Characteristics of Hydrous Ruthenium and Ruthenium-Iridium Oxides for Electrochemical Supercapacitors. Joural of Power Sources 108 117-127

(2002).

58. 張仍奎、蔡文達,含水氧化錳電極之製備與擬電容特性研究,2002 年材料年會 PE-17。

59. 黃厚升、林育立,陰極沈積法制備含水釕化物超電容特性及其陽極氧化效應探 討,中國機械工程學會93 年學術研討會 D0100846。

60. 黃厚升、林育立,陰極沈積法制備含水釕化物超電容特性及其熱處理效應探討,

中國機械工程學會93 年學術研討會 D0100884。

61. X. X. Jiang and Z. Chen. The Fundamentals and Practice of Electroless Plating.

Defence Industry Publishers.

62. Jeffrey W.Long, Amanda L.Ypung, and Debra R. Rolison. Spectroelectrochemical Characterization of Nanostructured, Mesoporous Manganese Oxide in Aqueous Electrolytes. Journal of Electrochemical Society 150 (9) A1161-A1165 (2003).

63. B.O.Park, C.D.Lokhande, H.S.Park, K.D.Jung, and O.S.Joo, Cathodic

Electrodeposition of RuO2 Thin Films from Ru(III)Cl3 Solution, Materials Chemistry and Physics 87 59-66 (2004).

64. B.O.Park, C.D.Lokhande, H.S.Park, K.D.Jung, and O.S.Joo. Performance of Supercapacitor With Electrodeposited Ruthenium Oxide Film Electrodes-Effect of Film Thickness. Journal of Power Sources 134 148-152 (2004).

65. S.L.Kuo and N.L.Wu. Composite Supercapacitor Containing Tin Oxide and Electroplated Ruthenium Oxide. Electrochemical and Solid-State Letters, 6 (5) A85-A87 (2003).

66. M. Vukovic and D. Cukman. Electrochemical Quartz Crystal Microbalance Study of Electroplated Ruthenium. Journal of Electrochemical Chemistry.

67. J.H.Jang, A.Kato, K.Machida, and K.Naoi. Supercapacitor Performance of Hydrous Ruthenium Oxide Electrodes Prepared by Electrophoretic Deposition. Journal of the Electrochemical Society, 153 (2) A321-A328 (2006).

68. Lourdes V´azquez-G´omeza, Sandro Cattarin , Paolo Guerriero. Preparation and electrochemical characterization of Ni + RuO2 composite cathodes of large effective area. Marco Musiani, Electrochimica Acta 52 A8055–A8063 (2007).

69. D.Dobrev, J.Vetter, N.Angert. Electrochemical preparation of metal microstructures on large areas of etched ion track membranes, Nuclear Instruments and Methods in Physics Research B 149 A207-A212(1999).

70. Sagar Mitra, K.S.Lokesh, S.Sampath. Exfoliated graphite-ruthenium oxide composite electrodes for electrochemical supercapacitors. Journal of Power Sources 185 1544-1549 (2008).

71. C.Arbizzani, M.Mastragostino and L.Meneghello. Characterization by Impedance Spectroscopy of A polymer-Based Supercapacitor. Department of Chemistry “G.

Ciamician”, Electrochemical Acta, Vol 40, No. 132 14, pp. 2223 2228 1995.

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