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NiO电极材料的溶胶凝胶法合成及其超级电容的性能 |
弥宁1( ), 赵磊1, 刘卯成2 |
1 陇东学院机械工程学院 庆阳 745000 2 兰州理工大学甘肃省有色金属新材料重点实验室 兰州 730050 |
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NiO Electrode Synthesized via Sol-gel Method and Super-Capacitive Performance |
Ning MI1( ), Lei ZHAO1, Maocheng LIU2 |
1 School of Mechanical Engineering, Longdong University, Qingyang 745000, China 2 State Key Laboratory of Gansu Advanced Non-ferrous Metal Materials, Lanzhou University of Technology, Lanzhou 730050, China |
引用本文:
弥宁, 赵磊, 刘卯成. NiO电极材料的溶胶凝胶法合成及其超级电容的性能[J]. 材料研究学报, 2017, 31(9): 714-720.
Ning MI,
Lei ZHAO,
Maocheng LIU.
NiO Electrode Synthesized via Sol-gel Method and Super-Capacitive Performance[J]. Chinese Journal of Materials Research, 2017, 31(9): 714-720.
[1] | Winter M, Brodd R J.What are batteries, fuel cells, and supercapacitors?[J]. Chem. Rev., 2004, 104: 4245 | [2] | Lunkenheimer P, Loidl A, Ottermann C R, et al.Correlated barrier hopping in NiO films[J]. Phys. Rev., 1991, 44B: 5927 | [3] | Kim T, Mo Y H, Nahm K S, et al.Carbon nanotubes (CNTs) as a buffer layer in silicon/CNTs composite electrodes for lithium secondary batteries[J]. J. Power Sources, 2006, 162: 1275 | [4] | Leitner K W, Winter M, Besenhard J O.Composite supercapacitor electrodes[J]. J. Solid State Electrochem., 2003, 8: 15 | [5] | Lewandowski A, Galinski M.Practical and theoretical limits for electrochemical double-layer capacitors[J]. J. Power Sources, 2007, 173: 822 | [6] | Brousse T, Taberna P L, Crosnier O, et al.Long-term cycling behavior of asymmetric activated carbon/MnO2 aqueous electrochemical supercapacitor[J]. J. Power Sources, 2007, 173: 633 | [7] | Duffy N W, Baldsing W, Pandolfo A G.The nickel-carbon asymmetric supercapacitor—performance, energy density and electrode mass ratios[J]. Electrochim. Acta, 2008, 54: 535 | [8] | Burke A.R&D considerations for the performance and application of electrochemical capacitors[J]. Electrochim. Acta, 2007, 53: 1083 | [9] | Qu Q T, Shi Y, Tian S, et al.A new cheap asymmetric aqueous supercapacitor: Activated carbon//NaMnO2[J]. J. Power Sources, 2009, 194: 1222 | [10] | Yoon J H, Bang H J, Prakash J, et al.Comparative study of Li[Ni1/3-Co1/3Mn1/3]O2 cathode material synthesized via different synthetic routes for asymmetric electrochemical capacitor applications[J]. Mater. Chem. Phys., 2008, 110: 222 | [11] | Algharaibeh Z, Liu X R, Pickup P G.An asymmetric anthraquinone-modified carbon/ruthenium oxide supercapacitor[J]. J. Power Sources, 2009, 187: 640 | [12] | An K H, Kim W S, Park Y S, et al.Electrochemical properties of high-power supercapacitors using single-walled carbon nanotube electrodes[J]. Adv. Funct. Mater., 2001, 11: 387 | [13] | Wang D W, Li F, Liu M, et al.3D aperiodic hierarchical porous graphitic carbon material for high-rate electrochemical capacitive energy storage[J]. Angew. Chem. Int. Ed., 2007, 47: 373 | [14] | Cao L, Xu F, Liang Y Y, et al.Preparation of the novel nanocomposite Co(OH)2/ultra-stable Y zeolite and its application as a supercapacitor with high energy density[J]. Adv. Mater., 2004, 16: 1853 | [15] | Ke Y F, Tsai D S, Huang Y S.Electrochemical capacitors of RuO2 nanophase grown on LiNbO3(100) and sapphire(0001) substrates[J]. J. Mater. Chem., 2005, 15: 2122 | [16] | Kong L B, Zhang J, An J J, et al.MWNTs/PANI composite materials prepared by in-situ chemical oxidative polymerization for supercapacitor electrode[J]. J. Mater. Sci., 2008, 43: 3664 | [17] | Fu H Y, Sun X Y, Gao X D, et al.Synthesis and characterization of benzothiazole derivatives for blue electroluminescent devices[J]. Synth. Met., 2009, 159: 254 | [18] | Itagaki M, Suzuki S, Shitanda I, et al.Impedance analysis on electric double layer capacitor with transmission line model[J]. J. Power Sources, 2007, 164: 415 | [19] | Sugimoto W, Iwata H, Yasunaga Y, et al.Preparation of ruthenic acid nanosheets and utilization of its interlayer surface for electrochemical energy storage[J]. Angew. Chem. Int. Ed., 2003, 42: 4092 | [20] | Gupta V, Gupta S, Miura N.Electrochemically synthesized nanocrystalline spinel thin film for high performance supercapacitor[J]. J. Power Sources, 2010, 195: 3757 | [21] | Srinivasan V, Weidner J W.Capacitance studies of cobalt oxide films formed via electrochemical precipitation[J]. J. Power Sources, 2002, 108: 15 | [22] | Zheng J P, Cygan P J, Jow T R.Hydrous ruthenium oxide as an electrode material for electrochemical capacitors[J]. J. Electrochem. Soc., 1995, 142: 2699 | [23] | Park B O, Lokhande C D, Park H S, et al.Performance of supercapacitor with electrodeposited ruthenium oxide film electrodes—effect of film thickness[J]. J. Power Sources, 2004, 134: 148 | [24] | Srinivasan V, Weidner J W.An electrochemical route for making porous nickel oxide electrochemical capacitors[J]. J. Electrochem. Soc., 1997, 144: L210 | [25] | Lang J W, Kong L B, Wu W J, et al.Synthesis, characterization, and electrochemical properties of Ni(OH)2/ultra-stable Y zeolite composite[J]. J. Mater. Sci., 2009, 44: 4466 | [26] | Palmas S, Ferrara F, Vacca A, et al.Behavior of cobalt oxide electrodes during oxidative processes in alkaline medium[J]. Electrochim. Acta, 2007, 53: 400 | [27] | Kong L B, Lang J W, Liu M, et al.Facile approach to prepare loose-packed cobalt hydroxide nano-flakes materials for electrochemical capacitors[J]. J. Power Sources, 2009, 194: 1194 | [28] | Toupin M, Brousse T, Bélanger D.Charge storage mechanism of MnO2 electrode used in aqueous electrochemical capacitor[J]. Chem. Mater., 2004, 16: 3184 | [29] | Wang X F, You Z, Ruan D B.A hybrid metal oxide supercapacitor in aqueous KOH electrolyte[J]. Chin. J. Chem., 2006, 24: 1126 | [30] | Liu K C, Anderson M A.Porous nickel oxide/nickel films for electrochemical capacitors[J]. J. Electrochem. Soc., 1996, 143: 124 | [31] | Bai Y S.Study on the preparation method of electrode materials in electrochemical supercapacitors [D]. Nanjing: Nanjing Tech University, 2005(柏云杉. 超级电容器电极材料的制备方法研究 [D]. 南京: 南京工业大学, 2005) | [32] | Guo H.The performance of the oxidation of nickel and its compounds supercapacitor [D]. Harbin: Harbin Engineering University, 2012(郭慧. 氧化镍及其复合物超级电容器的研究 [D]. 哈尔滨: 哈尔滨工程大学, 2012) | [33] | Cao L, Lu M, Li H L.Preparation of mesoporous nanocrystalline Co3O4 and its applicability of porosity to the formation of electrochemical capacitance[J]. J. Electrochem. Soc., 2005, 152: A871 | [34] | Wang X F, Ruan D B, You Z.Application of spherical Ni(OH)2/CNTs composite electrode in asymmetric supercapacitor[J]. Trans. Nonferrous Met. Soc. China, 2006, 16: 1129 | [35] | Wei T Y, Chen C H, Chang K H, et al.Cobalt oxide aerogels of ideal Supercapacitive properties prepared with an epoxide synthetic route[J]. Chem. Mater., 2009, 21: 3228 | [36] | Li Y M, Li W Y, Chou S L, et al.Synthesis, characterization and electrochemical properties of aluminum-substituted alpha-Ni(OH)2 hollow spheres[J]. J. Alloys Compd., 2008, 456: 339 | [37] | K?tz R, Carlen M.Principles and applications of electrochemical capacitors[J]. Electrochim. Acta, 2000, 45: 2483 |
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