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Optimizing the position of a current lead in the flow-type porous electrodeMASLII, A. I; PODDUBNYI, N. P.Russian journal of electrochemistry. 1999, Vol 35, Num 3, pp 345-347, issn 1023-1935Article

An AC impedance study of the degradation of porous nickel battery electrodesLENHART, S. J; MACDONALD, D. D; POUND, B. G et al.Journal of the Electrochemical Society. 1988, Vol 135, Num 5, pp 1063-1071, issn 0013-4651Article

Calculating electrochemical activity of porous electrodes of a filled-up type with an immobilized enzyme and regular gas poresCHIRKOV, Yu. G; ROSTOKIN, V. I.Russian journal of electrochemistry. 2003, Vol 39, Num 7, pp 731-742, issn 1023-1935, 12 p.Article

Gas-generating porous electrodes: Chlorine generation in DSA at low and intermediate overpotentialsPSHENICHNIKOV, A. G; CHIRKOV, Yu. G; ROSTOKIN, V. I et al.Russian journal of electrochemistry. 2002, Vol 38, Num 2, pp 213-219, issn 1023-1935Article

Determining the critical pore radius in an electrolyzer electrodeCHIRKOV, Y. G; ROSTOKIN, V. I; PSHENICHNIKOV, A. G et al.Soviet electrochemistry. 1991, Vol 27, Num 2, pp 213-217, issn 0038-5387Article

Impedance of composite materialsTOMKIEWICZ, M; AURIAN-BLAJENI, B.Journal of the Electrochemical Society. 1988, Vol 135, Num 11, pp 2743-2747, issn 0013-4651Article

Über ein Modell eines Festkörperkondensators mit poröser Anode = Un modèle de condensation solide à anode poreuse = A model for solid-state capacitor with porous anodeBARTHEL, W.Wissenschaftliche Zeitschrift der Technischen Hochschule Karl-Marx-Stadt. 1987, Vol 29, Num 2, pp 175-179, issn 0372-7610Article

Gas-generating porous electrodes: Allowing for the ohmic limitationsCHIRKOV, Yu. G; ROSTOKIN, V. I.Russian journal of electrochemistry. 2001, Vol 37, Num 8, pp 848-856, issn 1023-1935Article

Gas-generating porous electrodes : Large ohmic resistancesCHIRKOV, Yu. G; ROSTOKIN, V. I.Russian journal of electrochemistry. 2001, Vol 37, Num 9, pp 952-959, issn 1023-1935Article

Porous electrodes with a variable profile of the solid phase conductivityMASLII, A. I; PODDUBNYI, N. P.Russian journal of electrochemistry. 1997, Vol 33, Num 8, pp 834-838, issn 1023-1935Article

Performance of porous nickel electrode for alkaline H2/O2 fuel cellAL-SALEH, M. A; GULTEKIN, S; AL-ZAKRI, A. S et al.International journal of hydrogen energy. 1994, Vol 19, Num 8, pp 713-718, issn 0360-3199Article

Hydrophilic gas-generating porous electrodesCHIRKOV, YU. G; ROSTOKIN, V. I.Russian journal of electrochemistry. 1997, Vol 33, Num 7, pp 731-738, issn 1023-1935Article

Performance and modelling of a direct methanol solid polymer electrolyte fuel cellSCOTT, K; TAAMA, W; CRUICKSHANK, J et al.Journal of power sources. 1997, Vol 65, Num 1-2, pp 159-171, issn 0378-7753Conference Paper

Flow-through and flow-by porous electrodes of nickel foam. II: Diffusion-convective mass transfer between the electrolyte and the foamLANGLOIS, S; CŒURET, F.Journal of applied electrochemistry. 1989, Vol 19, Num 1, pp 51-60, issn 0021-891XArticle

Kinetics of the porous lead electrode in the lead-acid batterySIMONSSON, D; EKDUNGE, P; LINDGREN, M et al.Journal of the Electrochemical Society. 1988, Vol 135, Num 7, pp 1613-1618, issn 0013-4651Article

Efficiency of multisectional porous electrodes as a function of the number and arrangement of short-circuited current leadsMASLII, A. I; PODDUBNYI, N. P.Russian journal of electrochemistry. 1999, Vol 35, Num 4, pp 471-474, issn 1023-1935Article

On the short-time behavior of porous intercalation electrodesDARLING, R; NEWMAN, J.Journal of the Electrochemical Society. 1997, Vol 144, Num 9, pp 3057-3063, issn 0013-4651Article

Effect of zinc and iron ions on the electrochemistry of nickel oxide electrode : slow cyclic voltammetryKREJCI, I; VANYSEK, P.Journal of power sources. 1994, Vol 47, Num 1-2, pp 79-88, issn 0378-7753Article

A laboratory porous flow-through electrode reactor with interchangeable electrodesFENTON, J. M; GRASSO, D. T; PODLAHA, E. J et al.Journal of the Electrochemical Society. 1990, Vol 137, Num 9, pp 2809-2811, issn 0013-4651, 3 p.Article

Wetting properties of molten carbonate fuel cell elctrode materialsFISHER, J. M; BENNETT, P. S; PIGNON, J. F et al.Journal of the Electrochemical Society. 1990, Vol 137, Num 5, pp 1493-1495, issn 0013-4651Article

Bulk-Nanoporous-Silicon Negative Electrode with Extremely High Cyclability for Lithium-Ion Batteries Prepared Using a Top-Down ProcessWADA, Takeshi; ICHITSUBO, Tetsu; YUBUTA, Kunio et al.Nano letters (Print). 2014, Vol 14, Num 8, pp 4505-4510, issn 1530-6984, 6 p.Article

Effects of ion concentration on thermally-chargeable double-layer supercapacitorsHYUCK LIM; WEIYI LU; XI CHEN et al.Nanotechnology (Bristol. Print). 2013, Vol 24, Num 46, issn 0957-4484, 465401.1-465401.5Article

Effect of mass and charge transport speed and direction in porous anodes on microbial electrolysis cell performanceSLEUTELS, Tom H. J. A; HAMELERS, Hubertus V. M; BUISMAN, Cees J. N et al.Bioresource technology. 2011, Vol 102, Num 1, pp 399-403, issn 0960-8524, 5 p.Article

Macrohomogenous modeling of porous SOFC electrodesALKHATEEB, Mnhamadkheir; PARULEKAR, Satish J; SELMAN, J. Robert et al.Proceedings - Electrochemical Society. 2005, issn 0161-6374, isbn 1-56677-465-9, vol1, 738-748Conference Paper

Multicomponent transport in porous electrodes of proton exchange membrane fuel cells using the interdigitated gas distributorsJUNG SEOK YI; TRUNG VAN NGUYEN.Journal of the Electrochemical Society. 1999, Vol 146, Num 1, pp 38-45, issn 0013-4651Article

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