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Supercapacitors manganese-based

Jiang J, Kucemak A. Electrochemical supercapacitor material based on manganese oxide preparation and characterization. Electrochim. Acta 2002 47 2381-6. [Pg.62]

Electrochemical capacitors are attractive for application as power sources. Instead of conventional activated carbon electrodes, we applied electrochemically active manganese oxides as electrodes of asymmetric capacitors. This chapter presents the recent contributions of the manganese-based supercapacitors. [Pg.317]

Li, Z., et al., Electrostatic layer-by-layer self-assembly multilayer films based on graphene and manganese dioxide sheets as novel electrode materials for supercapacitors. Journal of Materials Chemistry, 2011. 21(10) p. 3397-3403. [Pg.161]

Wei, W, Cui, X., Chen, W, Ivey, D.G., 2011. Manganese oxide-based materials as electrochemical supercapacitor electrodes. Chem. Soc. Rev. 40,1697-1721. [Pg.240]

FIGURE 2.21 Capacitance retention (CCq ), normalized based on the capacitance of the second cycle (Cq), versus cycle number for the ES cells either with (O) or without (A) Ti(IV) in the electrolyte (1 M KCl scan rate = 50 mV s" )- (Reprinted from Electrochemistry Communications, 13, Ataherian, F., and N. L. Wu, 1.2 Volt manganese oxide syimnetric supercapacitor, 1264-1267, Copyright 2011, with permission from Elsevier.)... [Pg.73]

Wang, R. Y., Q. Li, L. L. Cheng et al. 2014. Electrochemical properties of manganese ferrite-based supercapacitors in aqueous electrolyte The effect of ionic radius. Colloids and Surfaces A Physicochemical and Engineering Aspects 457 94-99. [Pg.208]

Li, J., Q, M. Yang, and I. Zhitomirsky. 2008. Nickel foam-based manganese dioxide-carbon nanotube composite electrodes for electrochemical supercapacitors. Journal of Power Sources 185 1569-1574. [Pg.211]

Zhang, Y. X., M. Kuang, X. D. Hao et al. 2014. Rational design of hierarchically porous birnessite-type manganese dioxides nanosheets on different one-dimensional titania-based nanowires for high performance supercapacitors. Journal of Power Sources 270 675-683. [Pg.214]

Xie, Y. B., and X. Q. Fang. 2014. Electrochemical flexible supercapacitor based on manganese dioxide-titanium nitride nanotube hybrid. Electrochimica Acta 120 273-283. [Pg.245]

Yang, C., L. Dong, Z. X. Chen, and H. B. Lu. 2014. High-performance all-solid-state supercapacitor based on the assembly of graphene and manganese(II) phosphate nanosheets. Journal of Physical Chemistry C 118 18884-18891. [Pg.245]

Kang, Y. J., H. Chung, and W. Kim. 2013.1.8-V flexible supercapacitors with asymmetric configuration based on manganese oxide, carbon nanotubes, and a gel electrolyte. Synthetic Metals 166 40-44. [Pg.245]

Kmnaba S, Tsuchikawa T, Ogata A, Yabuuchi N, Nakagawa D, Tranita M (2011) Nano-structured bimessite prepared by electrochcanical activation of manganese(III)-based oxides for aqueous supercapacitors. Electrochim Acta 59 455... [Pg.1225]

Staiti, P. and E Lufrano. 2010. Investigation of polymer electrolyte hybrid supercapacitor based on manganese oxide-carbon electrodes. Electrochimica Acta, 55,... [Pg.200]


See other pages where Supercapacitors manganese-based is mentioned: [Pg.194]    [Pg.56]    [Pg.72]    [Pg.35]    [Pg.51]    [Pg.35]    [Pg.51]    [Pg.1221]    [Pg.1222]    [Pg.1223]    [Pg.1223]    [Pg.1224]    [Pg.1224]    [Pg.329]    [Pg.329]    [Pg.350]    [Pg.489]   
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