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Structure of the electrochemical interface of mechanically renewable graphite electrode with aqueous solutions of surface inactive electrolyte
Safonov V., Choba М.
Analysis of Impedance Spectra of a Lithium Electrode by the Distribution of Relaxation Times
Kolosnitsyn D., Osipova D., Kuzmina E., Karaseva E., Kolosnitsyn V.
INFLUENCE OF THE METHOD OF FORMING A Pr2CuO4-BASED CATHODE ON THE ELECTROCHEMICAL CHARACTERISTICS OF A PLANAR ELECTROLYTE-SUPPORTED SOFC
Dobrovolsky Y., Lyskov N., Mazo G.
Diamond Compact Electrodes with Increased Electroactivity: Anodic Oxidation of Ethylenediaminetetraacetic Acid
Pleskov Y., Кrotova M., Еkimov E.
Processes at platinum electrodes during the cathode polarization in alcohol erbium nitrate solution
Volchek S., Yakovtseva V.
ELECTROCHEMICAL REDUCTION OF CARBON DIOXIDE TO FORMATE IN ACID ELECTROLYTE IN ACETYLENE BLACK GAS DIFFUSION ELECTRODE WITH A LEAD CATALYST
Kolyagin G., Taran O.
Electrocatalytic Properties of Water-Soluble Nickel(II) and Copper(II) Phthalocyaninates in the Oxidation Reaction of Hydroxide Ions
Kovanova M., Derbeneva P., Postnov A., Tikhomirova T., Vashurin A., Koifman O.
Electrochemical reduction of carbon dioxide to formate in acetylene black gas diffusion electrode with a tin catalyst
Kolyagin G., Taran O.
Kinetics of Electrooxidation of Dimethyl Sulfoxide on a Platinum Electrode with Sulphuric Acid and Alkaline Solutions
Ibragimova K., Khidirov S., Suleymanov S.
Corrigendum Electrocatalytic properties of water-soluble nickel(II) and copper(II) phthalocyaninates in the oxidation reaction of hydroxide ions (Electrochemistry. 2024. V. 60. № 6. P. 408–414; DOI: 10.31857/S0424857024060036)
Kovanova M., Derbeneva P., Postnov A., Tikhomirova T., Vashurin A., Koifman O.
Effect of Current Density on Specific Characteristics of Negative Electrodes for Lithium-Ion Batteries Based on Heat-Treated Petroleum Coke
Kuzmina E., Chudova N., Kolosnitsyn V.
All solid state thin-film lithium-ion batteries (review)
Skundin А., Kulova Т.
Electrochemical Oxygen Generator with Solid-Molten Bi2O3–B2O3 Electrolyte and Porous Bi3Ru3O11–Bi2O3 Electrodes
Dergacheva P., Fedorov S., Belousov V., Konovalov A., Artemov V.
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