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[1] Allen J. Bard and Larry R. Faulkner, “ELECTROCHEMICAL METHODS:Fundamentals and Applications , 2nd Edition”, Wiley(2001) [2] 胡啟章,“電化學原理與方法” , 五南(2002).

[3] Joseph Wang, “ANALYTICAL ELECTROCHEMISTRY : Third Edition”, Wiley(2006)

[4] François Béguin, Elżbieta Frąckowiak ,”Supercapacitors Materials, Systems, and Applications”, Wiley(2013)

[5] W.W. Liu, X. Yan, J. Lang, C. Peng, Q. Xue, “Flexible and conductive composite electrode based on graphene sheets and cotton cloth for supercapacitor”, J. Mater. Chem., 22, 17245-17253(2012)

[6] Hui Peng a, Guofu Maa*, Kanjun Sun b, Zhiguo Zhang a, Qian Yang a, Feitian Rana and Ziqiang Lei a *, “A facile and rapid preparation of highly crumpled nitrogen-doped graphene-like nanosheets for high-performance supercapacitors”, J. Mater. Chem. A, 3, 13210-13214(2015)

[7] Y.-Z. Wei, B. Fang, S. Iwasa, M. Kumagai, “A novel electrode material for electric double-layer capacitors”, J POWER SOURCES , 141, 386-391(2005)

[8] Mathieu Toupin, Daniel Belanger, Ian R. Hillb, David Quinnc,

“Performance of experimental carbon blacks in aqueous supercapacitors”,

113

J POWER SOURCES , 140, 203-210(2005)

[9] Dell, R.M. and Rand, D.A.J., ‘’Understanding Batteries”, Royal Society of Chemistry(2001)

[10] Conway, B.E., “Electrochemical Supercapacitors. Scientific Fundamentals”, Springer(1999)

[11] E. Becker, U.S. Patent 2 800 616 (to General Electric) (1957).

[12] D.I. Boos, U.S. Patent 3 536 963 (to Standard Oil, SOHIO) (1970).

[13] Andrew Burke, “Ultracapacitors: why, how, and where is the technology“, J POWER SOURCES , 91, 37-50(2000)

[14] Patrice Simon1, Yury Gogotsi2, Bruce Dunn3, “Where Do Batteries End and Supercapacitors Begin?” , MATERIALS SCIENCE, 343, 1210-1211(2014)

[15] Adrian Schneuwly, Roland Gallay, “Properties and applications of supercapacitors From the state-of-the-art to future trends”, Proceedings of PCIM(2000)

[16] R. Kötza, M. Carlenb, “principle and applications of electrochemical capacitors”, Electrochimica Acta,45, 2483-2498(2000)

[17] IRIS E. RAUDA, VERONICA AUGUSTYN, BRUCE DUNN and SARAH H. TOLBERT, “Enhancing Pseudocapacitive Charge Storage in Polymer Templated Mesoporous Materials”, Acc. Chem. Res., 46, 1113-1124(2013)

[18] 葉文亮, “以苯乙烯-馬來酸酐共聚合物接枝聚乙二醇之合成及其應

114

用”, 國立成功大學化工系碩士論文(2002)

[19] 陳善楣, “光聚合架橋性高分子離子液體應用於太陽能電池”, 國立高 雄大學化材所碩士論文(2015)

[20] Walden P. Bull, ” Molecular weights and electrical conductivity of several fused salts”, Acad. Impér. Sci., 8, 405-422 (1914).

[21] F. H. Hurley and T. P. Wier, “The electrodeposition of aluminium from nonaqueous solutions at room temperature”, J. Electrochem Soc., 98, 207-212 (1951).

[22] F. H. Hurley and T. P. Wier, “Electrodeposition of metals from fused quaternary ammonium salts”, J. Electrochem Soc., 98, 203-206 (1951).

[23] C. L. Hussey, “Room temperature haloaluminate ionic liquids novel solvents for transition metal solution chemistry”, Pure & Appl. Chem., 60, 1763-1772 (1988).

[24] J. S. Wilkes, J. A. Levisky, R. A. Wilson and C. L. Hussey,

“Dialkylimidazolium chloroaluminate melts: A new class of room-temperature ionic liquids for electrochemistry, spectroscopy and synthesis”, Inorg. Chem., 21, 1263-1264 (1982).

[25] M. D. Bermúdez, A. E. Jiménez, J. Sanes and F. J. Carrión, “Ionic liquids as advanced lubricant fluids”, Molecules, 14, 2890-2891(2009).

[26] 張星辰, “離子液體-從理論基礎到研究進展”, 化學工業出版社, 第一 章(2009)

[27] Mahinder Ramdin, Theo W. de Loos, and Thijs J.H. Vlugt*,

115

“State-of-the-Art of CO2 Capture with Ionic Liquids”, Ind. Eng. Chem.

Res., 51, 8149–8177(2012)

[28] Michel Armand, Frank Endres, Douglas R. MacFarlane, Hiroyuki Ohno & Bruno Scrosati, “Ionic-liquid materials for the electrochemical challenges of the future”, Nature Materials, 8, 621-629(2009)

[29] 何晓燕,徐晓君,周文瑞,杨 武, “聚离子液体的合成及应用”, 高分 子通报, 5, 19-28(2013)

[30] DavidMecerreyes, “Polymeric ionic liquids: Broadening the properties and applications of polyelectrolytes”, Prog. Polym. Sci., 36, 1629-1648(2011)

[31] 張倍毓, “利用光聚合法製備以雙酚 A 二甲基丙烯酸酯寡聚物為底材 之高分子複合膜”, 國立高雄大學化材所碩士論文(2016)

[32] Mohamad Ali Tehfe, Fanny Louradour, Jacques Lalevée and Jean-Pierre Fouassier, “Photopolymerization Reactions: On the Way to a Green and Sustainable Chemistry”, Appl. Sci., 3, 490-514(2013)

[33] D. I. Bowers and W. F. Maddams, “Radiation Curing of Polymeric Materials”, Anal. Chim., 62, 668(1990)

[34] V. Ruiz, R. Santamaría, M. Granda, C. Blanco, “Long-term cycling of carbon-based supercapacitors in aqueous media”, Electrochim. Acta., 54, 4481-4486(2009)

[35] K.K. Denshchikov, M.Y. Izmaylova, A.Z. Zhuka, Y.S. Vygodskii, V.T.

Novikov, A.F. Gerasimov, “1-Methyl-3-butylimidazolium

116

tetraflouroborate with activated carbon for electrochemical double layer supercapacitors”, Electrochim. Acta., 55, 7506-7510(2010)

[36] Shigeaki Yamazaki, Tatsuya Ito, Masaki Yamagata, Masashi Ishikawa,

“Non-aqueous electrochemical capacitor utilizing electrolytic redox reactions of bromide species in ionic liquid”, Electrochim. Acta., 86, 294-297(2012)

[37] M. Brachet, T. Brousse and J. Le Bideaua, “All Solid-State Symmetrical Activated Carbon Electrochemical Double Layer Capacitors Designed with Ionogel Electrolyte”, ECS ELECTROCHEM LETT., 3, 112-115(2014)

[38] Jeeyoung Yoo and Youn Sang Kim, et al, “All solid state flexible supercapacitors operating at 4 V with a cross-linked polymer–ionic liquid electrolyte”, J. Mater. Chem. A, 4, 4386-4391(2016)

[39] Girum Ayalneh Tiruye, David Munoz-Torrero, Jesus Palma, Marc Anderson, Rebeca Marcilla, “All-solid state supercapacitors operating at 3.5 V by using ionic liquid based polymer electrolytes”, J POWER SOURCES, 279, 472-480(2016)

[40] Shen-Mei Chen, Tzong-Liu Wang, Pei-Yu Chang, Chien-Hsin Yang, Yi-Chao Lee, “Poly(ionic liquid) prepared by photopolymerization of ionic liquid monomers as quasi-solid-state electrolytes for dye-sensitized solar cells”, REACT FUNCT POLYM, 108, 103-112(2016)

[41] Jiayin Yuan and Markus Antonietti, “Poly(ionic liquid) Latexes Prepared

117

by Dispersion Polymerization of Ionic Liquid Monomers”, Macromolecules, 44, 744-750(2011)

[42] L. G. Wade, Jr., “Organic chemistry’’, 510-554, PEARSON, Upper Saddle River, USA (2011).

[43] J. Kiefer, J. Fries and A. Leipertz, “Experimental vibrational study of imidazolium-based ionic liquids: Raman and infrared spectra of 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide and 1-ethyl-3-methylimidazolium ethylsulfate”, J. Appl. Spectrosc., 61, 1306-1311(2007).

[44] H. Peng, G. Ma, K. Sun, Z. Zhang, Q. Yang, F. Rana, Z. Lei, “A facile and rapid preparation of highly crumpled nitrogen-doped graphene-like nanosheets for high-performance supercapacitors”, J. Mater. Chem. A, 3, 13210–13214(2015)

[45] K.S. Ryu, Y.Lee, K.S. Han, Y.J. Parka, M.G. Kang, N.G. Park, S.H.

Chang, “Electrochemical supercapacitor based on polyaniline doped with lithium salt and active carbon electrodes”, Solid State Ionics, 175, 765–768(2004)

[46] Hyun Seok Jang, C. Justin Raj, Won-Gil Lee, Byung Chul Kim and Kook Hyun Yu, “ Enhanced Supercapacitive Performances of Functionalized Activated Carbon in Novel Gel Polymer Electrolytes with Ionic Liquid redox-mediated Poly(vinyl alcohol)/ Phosphoric Acid”, RSC Adv., 6, 75376-75383(2016)

118

[47] C.-W. Liew, S. Ramesh and A. K. Arof, “Good prospect of ionic liquid based-poly(vinyl alcohol) polymer electrolytes for supercapacitors with excellent electrical, electrochemical and thermal properties”, Int. J.

Hydrogen Energy, 39, 2953-2963(2014)

[48] C.-W. Liew, S. Ramesh and A. K. Arof, “Characterization of ionic liquid added poly (vinyl alcohol)-based proton conducting polymer electrolytes and electrochemical studies on the supercapacitors”, Int. J. Hydrogen Energy, 40, 852-862(2015)

[49] Patric Jannasch, “Ion conducting electrolytes based on aggregating comblike poly(propylene oxide)”, 42, 8629-8635(2001)

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