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Results 1 to 25 of 1208

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Mathematical modelling of ionic transport in the electrolyte of Li-ion batteriesDANILOV, D; NOTTEN, P. H. L.Electrochimica acta. 2008, Vol 53, Num 17, pp 5569-5578, issn 0013-4686, 10 p.Article

Self-organized TiO2 nanotubes prepared in ammonium fluoride containing acetic acid electrolytesTSUCHIYA, Hiroaki; MACAK, Jan M; TAVEIRA, Luciano et al.Electrochemistry communications. 2005, Vol 7, Num 6, pp 576-580, issn 1388-2481, 5 p.Article

Performance of AC/graphite capacitors at high weight ratios of AC/graphiteHONGYU WANG; YOSHIO, Masaki.Journal of power sources. 2008, Vol 177, Num 2, pp 681-684, issn 0378-7753, 4 p.Article

Influence of electrolyte ion―solvent interactions on the performances of supercapacitors porous carbon electrodesDECAUX, C; MATEI GHIMBEU, C; DAHBI, M et al.Journal of power sources (Print). 2014, Vol 263, pp 130-140, issn 0378-7753, 11 p.Article

Preparation and performance of straw based activated carbon for supercapacitor in non-aqueous electrolytesXUELIANG LI; CHANGLONG HAN; XIANGYING CHEN et al.Microporous and mesoporous materials. 2010, Vol 131, Num 1-3, pp 303-309, issn 1387-1811, 7 p.Article

High voltage electrochemical double layer capacitors using conductive carbons as additivesMICHAEL, M. S; PRABAHARAN, S. R. S.Journal of power sources. 2004, Vol 136, Num 2, pp 250-256, issn 0378-7753, 7 p.Conference Paper

Factors influencing surface morphology of anodized Ti02 nanotubesREGONINI, D; SATKA, A; JAROENWORALUCK, A et al.Electrochimica acta. 2012, Vol 74, pp 244-253, issn 0013-4686, 10 p.Article

Effect of water contamination in the organic electrolyte on the performance of activated carbon/graphite capacitorsHONGYU WANG; YOSHIO, Masaki.Journal of power sources (Print). 2010, Vol 195, Num 1, pp 389-392, issn 0378-7753, 4 p.Article

From symmetric AC/AC to asymmetric AC/graphite, a progress in electrochemical capacitorsWANG, Hongyu; YOSHIO, Masaki; THAPA, Arjun Kumar et al.Journal of power sources. 2007, Vol 169, Num 2, pp 375-380, issn 0378-7753, 6 p.Article

A practical method for the calculation of liquid―liquid equilibria in multicomponent organic-water-electrolyte systems using physicochemical constraintsZUEND, Andreas; SEINFELD, John H.Fluid phase equilibria. 2013, Vol 337, pp 201-213, issn 0378-3812, 13 p.Article

An improvement of battery performance of lithium batteries assembled with a polypyrrole cathode formed electrochemically with the aid of a nitrile rubber insulating filmNAOI, K; ISHIJIMA, A; OSAKA, T et al.Journal of electroanalytical chemistry and interfacial electrochemistry. 1987, Vol 217, Num 1, pp 203-207, issn 0022-0728Article

Dimethyl sulfoxide-based electrolytes for rechargeable lithium batteriesMORITA, M; TACHIHARA, F; MATSUDA, Y et al.Electrochimica acta. 1987, Vol 32, Num 2, pp 299-305, issn 0013-4686Conference Paper

Lithium cycling in polymethoxymethane solvantsFOOS, J. S; MCVEIGH, J.Journal of the Electrochemical Society. 1983, Vol 130, Num 3, pp 628-630, issn 0013-4651Article

Efficient acid-catalyzed hydrolysis of cellulose in organic electrolyte solutionsZEHUI ZHANG; BINGLIU; ZONGBAO ZHAO et al.Polymer degradation and stability. 2012, Vol 97, Num 4, pp 573-577, issn 0141-3910, 5 p.Article

Hydrometallurigcal thermodynamics. III: Solvent effects on the activities and distribution of Hal-, Hal2 and Hal3-, in acetonitrile and propionitrile-water mixtures and applications to zinc-halogen batteriesSINGH, P; CLARE, B. W; KENNA, C. C et al.Electrochimica acta. 1986, Vol 31, Num 5, pp 535-543, issn 0013-4686Article

Electrochemical characteristics of ZrSe2 in a secondary lithium batteryONUKI, Y; INADA, R; TANUMA, S et al.Solid state ionics. 1983, Vol 8, Num 2, pp 141-145, issn 0167-2738Article

Lead oxides as cathode materials for voltage-compatible lithium cellsPERALDO BICELLI, L; RIVOLTA, B; BONINO, F et al.Journal of power sources. 1986, Vol 18, Num 1, pp 63-74, issn 0378-7753Article

STATUS OF THE SECONDARY LITHIUM ELECTRODEKOCH VR.1981; J. POWER SOURCES; ISSN 0378-7753; CHE; DA. 1981; VOL. 6; NO 4; PP. 357-370; BIBL. 76 REF.Article

Effect of electrolyte temperature on the formation of self-organized anodic niobium oxide microcones in hot phosphate―glycerol electrolyteYANG, S; AOKI, Y; HABAZAKI, H et al.Applied surface science. 2011, Vol 257, Num 19, pp 8190-8195, issn 0169-4332, 6 p.Conference Paper

Behavior of some binary lithium alloys as negative electrodes in organic solvent-based electrolytesWANG, J; RAISTRICK, I. D; HUGGINS, R. A et al.Journal of the Electrochemical Society. 1986, Vol 133, Num 3, pp 457-460, issn 0013-4651Article

Image recording material using an Ag+ ion conductorFUJIWARA, M.Journal of electroanalytical chemistry and interfacial electrochemistry. 1990, Vol 280, Num 1, pp 185-187, issn 0022-0728, 3 p.Article

TiO2 nanotubes grown in different organic electrolytes: Two-size self-organization, single vs. double-walled tubes, and giant diametersALBU, Sergiu P; SCHMUKI, Patrik.Physica status solidi. Rapid research letters (Print). 2010, Vol 4, Num 8-9, pp 215-217, issn 1862-6254, 3 p.Article

Noise characterization of surface processes of the Li/organic electrolyte interfaceGRAFOV, B. M; KANEVSKII, L. S; ASTAFIEV, M. G et al.Journal of applied electrochemistry. 2005, Vol 35, Num 12, pp 1271-1276, issn 0021-891X, 6 p.Article

Activated high specific surface area carbon aerogels for EDLCsNIANPING LIU; JUN SHEN; DONG LIU et al.Microporous and mesoporous materials. 2013, Vol 167, pp 176-181, issn 1387-1811, 6 p.Conference Paper

Comparison of the thermal and electrochemical properties of LiPF6 and LiN(SO2C2F5)2 salts in organic electrolytesNAGASUBRAMANIAN, G.Journal of power sources. 2003, Vol 119-21, pp 811-814, issn 0378-7753, 4 p.Conference Paper

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