Диссертация (1150282), страница 22
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223: p. 125-128.28.C.M. Hangarter, Y. Rheem, T. Stahovich,N.V. Myung, Synthesis and magnetotransport properties of single PEDOT/Ni and PEDOT/Ni30Fe70 core/shell nanowires.Electrochimica Acta, 2011. 56(16): p. 5561-5565.29.T. Cottineau, M. Toupin, T.
Delahaye, T. Brousse,D. Belanger, Nanostructuredtransition metal oxides for aqueous hybrid electrochemical supercapacitors. AppliedPhysics a-Materials Science & Processing, 2006. 82(4): p. 599-606.30.D. Belanger, T. Brousse,J.W. Long, Manganese oxides: battery materials make the leapto electrochemical capacitors.
Electrochemical Society Interface, 2008. 17(1): p. 4.31.K. Naoi,M. Morita, Advanced Polymers as Active Materials and Electrolytes forElectrochemical Capacitors and Hybrid Capacitor Systems. The ElectrochemicalSociety Interface, 2008. 17: p. 5.32.K. Naoi,P. Simon, New Materials and New Configurations for AdvancedElectrochemical Capacitors.
Journal of the Electrochemical Society Interfaces, 2008.17: p. 4.14233.R. Ramya, R. Sivasubramanian,M.V. Sangaranarayanan, Conducting polymers-basedelectrochemical supercapacitors-Progress and prospects. Electrochimica Acta, 2013.101: p. 109-129.34.M. Kalaji, P.J. Murphy,G.O. Williams, The study of conducting polymers for use asredox supercapacitors. Synthetic Metals, 1999. 102(1-3): p. 1360-1361.35.D.A. Buttry, Application of EQCM to Electrochemistry, in Electroanalytical Chemistry,A. Bard, Editor 1991, Marcel Dekker: N.Y. p. 85.36.T.A. Skotheim, Handbook of Conducting Polymers. Vol.
2. 1986, N.Y.: Marcel Dekker.37.A. Kraft, A.C. Grimsdale,A.B. Holmes, Electroluminescent conjugated polymers Seeing polymers in a new light. Angewandte Chemie-International Edition, 1998. 37(4):p. 402-428.38.A.R. Hepburn, J.M. Marshall,J.M. Maud, Novel Electrochromic Films Via AnodicOxidation of Carbazolyl Substituted Polysiloxanes. Synthetic Metals, 1991.
43(1-2): p.2935-2938.39.J.C. Dubois, O. Sagnes,F. Henry, Polyheterocyclic Conducting Polymers andComposites Derivates. Synthetic Metals, 1989. 28(1-2): p. C871-C878.40.J. Roncali, R. Garreau, D. Delabouglise, F. Garnier,M. Lemaire, Modification of theStructure and Electrochemical Properties of Poly(Thiophene) by Ether Groups. Journalof the Chemical Society-Chemical Communications, 1989(11): p. 679-681.41.D.D.C. Bradley, Molecular Electronics - Aspects of the Physics. Chemistry in Britain,1991. 27(8): p. 719-723.42.A. Burke, Ultracapacitors: why, how, and where is the technology.
Journal of PowerSources, 2000. 91(1): p. 37-50.43.G. Sonmez, H. Meng, Q. Zhang,F. Wudl, A highly stable, new electrochromic polymer:Poly(1,4-bis(2-(3(,)' 4 ' ethylenedioxy)thienyl)-2-methoxy-5-2 ''-ethylhexyloxybenzene).Advanced Functional Materials, 2003. 13(9): p. 726-731.44.J.P.
Zheng, P.J. Cygan,T.R. Jow, Hydrous Ruthenium Oxide as an Electrode Materialfor Electrochemical Capacitors. Journal of the Electrochemical Society, 1995. 142(8):p. 2699-2703.14345.C.C. Hu, W.C. Chen,K.H. Chang, How to achieve maximum utilization of hydrousruthenium oxide for supercapacitors. Journal of the Electrochemical Society, 2004.151(2): p. A281-A290.46.J.M. Miller,B.
Dunn, Morphology and electrochemistry of ruthenium/carbon aerogelnanostructures. Langmuir, 1999. 15(3): p. 799-806.47.K.C. Liu,M.A. Anderson, Porous nickel oxide/nickel films for electrochemicalcapacitors. Journal of the Electrochemical Society, 1996. 143(1): p. 124-130.48.C. Natarajan, H. Matsumoto,G. Nogami, Improvement in electrochromic stability ofelectrodeposited nickel hydroxide thin film. Journal of the Electrochemical Society,1997.
144(1): p. 121-126.49.L. Cao, L.B. Kong, Y.Y. Liang,H.L. Li, Preparation of novel nano-compositeNi(OH)(2)/USY material and its application for electrochemical capacitance storage.Chemical Communications, 2004(14): p. 1646-1647.50.W. Xing, S.Z. Qiao, X.Z. Wu, X.L. Gao, J. Zhou, S.P.
Zhuo, S.B. Hartono,D. HulicovaJurcakova, Exaggerated capacitance using electrochemically active nickel foam ascurrent collector in electrochemical measurement. Journal of Power Sources, 2011.196(8): p. 4123-4127.51.P. Oliva, J. Leonardi, J.F. Laurent, C. Delmas, J.J. Braconnier, M. Figlarz, F. Fievet,A.Deguibert, Review of the Structure and the Electrochemistry of Nickel Hydroxides andOxy-Hydroxides.
Journal of Power Sources, 1982. 8(2-3): p. 229-255.52.Fleischm.M, K. Korinek,D. Pletcher, Oxidation of Organic Compounds at a NickelAnode in Alkaline Solution. Journal of Electroanalytical Chemistry, 1971. 31(1): p. 39&.53.W.E. OGrady, K.I. Pandya, K.E. Swider,D.A. Corrigan, In situ x-ray absorption nearedge structure evidence for quadrivalent nickel in nickel battery electrodes. Journal ofthe Electrochemical Society, 1996. 143(5): p. 1613-1616.54.S. Deabate,F.
Henn, Structural modifications and electrochemical behaviour of thebeta(II)-Ni(OH)(2)/beta(III)-NiOOHredoxcoupleupongalvanostaticcharging/discharging cycling. Electrochimica Acta, 2005. 50(14): p. 2823-2835.14455.J.W. Lang, L.B. Kong, W.J. Wu, M. Liu, Y.C.
Luo,L. Kang, A facile approach to thepreparation of loose-packed Ni(OH)(2) nanoflake materials for electrochemicalcapacitors. Journal of Solid State Electrochemistry, 2009. 13(2): p. 333-340.56.P.V. Kamath, M. Dixit, L. Indira, A.K. Shukla, V.G. Kumar,N. Munichandraiah,Stabilized Alpha-Ni(Oh)2 as Electrode Material for Alkaline Secondary Cells. Journalof the Electrochemical Society, 1994.
141(11): p. 2956-2959.57.D.L. Fang, Z.D. Chen, X. Liu, Z.F. Wu,C.H. Zheng, Homogeneous growth of nanosizedbeta-Ni(OH)(2)onreducedgrapheneoxideforhigh-performancesupercapacitors. Electrochimica Acta, 2012. 81: p. 321-329.58.X.Z. Wu, W. Xing, L. Zhang, S.P. Zhuo, J. Zhou, G.Q. Wang,S.Z. Qiao, Nickelnanoparticles prepared by hydrazine hydrate reduction and their application insupercapacitor.
Powder Technology, 2012. 224: p. 162-167.59.V. Ganesh, S. Farzana,S. Berchmans, Nickel hydroxide deposited indium tin oxideelectrodes as electrocatalysts for direct oxidation of carbohydrates in alkaline medium.Journal of Power Sources, 2011. 196(23): p. 9890-9899.60.X.J. Zhu, H.L. Dai, J. Hu, L. Ding,L. Jiang, Reduced graphene oxide-nickel oxidecomposite as high performance electrode materials for supercapacitors. Journal ofPower Sources, 2012. 203: p. 243-249.61.A.D.
Su, X. Zhang, A. Rinaldi, S.T. Nguyen, H.H. Liu, Z.B. Lei, L. Lu,H.M. Duong,Hierarchical porous nickel oxide-carbon nanotubes as advanced pseudocapacitormaterials for supercapacitors. Chemical Physics Letters, 2013. 561: p. 68-73.62.L.L. Zhang, Z.G. Xiong,X.S. Zhao, A composite electrode consisting of nickelhydroxide, carbon nanotubes, and reduced graphene oxide with an ultrahighelectrocapacitance. Journal of Power Sources, 2013. 222: p. 326-332.63.V. Srinivasan,J.W. Weidner, An electrochemical route for making porous nickel oxideelectrochemical capacitors.
Journal of the Electrochemical Society, 1997. 144(8): p.L210-L213.64.M.Q. Wu, J.H. Gao, S.R. Zhang,A. Chen, Comparative studies of nickel oxide films ondifferent substrates for electrochemical supercapacitors. Journal of Power Sources,2006. 159(1): p. 365-369.14565.K.-X. He, Q.-F. Wu, X.-g. Zhang,X.-L. Wang, Electrodeposition of Nickel and CobaltMixed Oxide/Carbon Nanotube Thin Films and Their Charge Storage Properties.Journal of the Electrochemical Society, 2006. 153(8): p. 6.66.M. Toupin, T. Brousse,D. Belanger, Charge storage mechanism of MnO2 electrodeused in aqueous electrochemical capacitor. Chemistry of Materials, 2004.
16(16): p.3184-3190.67.H.Y. Lee,J.B. Goodenough, Supercapacitor behavior with KCl electrolyte. Journal ofSolid State Chemistry, 1999. 144(1): p. 220-223.68.J. Chen, C.Y. Jia,Z.Q. Wan, The preparation and electrochemical properties ofMnO2/poly(3,4-ethylenedioxythiophene)/multiwalledcarbonnanotubeshybridnanocomposite and its application in a novel flexible micro-supercapacitor.Electrochimica Acta, 2014.
121: p. 49-56.69.Y. Hou, Y.W. Cheng, T. Hobson,J. Liu, Design and Synthesis of Hierarchical MnO2Nanospheres/Carbon Nanotubes/Conducting Polymer Ternary Composite for HighPerformance Electrochemical Electrodes. Nano Letters, 2010. 10(7): p. 2727-2733.70.B.D. Desai, J.B. Fernandes,V.N.K. Dalal, Manganese-Dioxide - a Review of a BatteryChemical .2. Solid-State and Electrochemical Properties of Manganese Dioxides.Journal of Power Sources, 1985. 16(1): p. 1-43.71.J.Y.