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New Gas-Diffusion Electrode Based on Heterocyclic Microporous Polymer PIM-1 for High-Temperature Polymer Electrolyte Membrane Fuel Cell
Ponomarev I., Skupov K., Ponomarev I., Razorenov D., Volkova Y., Basu V., Zhigalina O., Bukalov S., Volfkovich Y., Sosenkin V.
Interpretation of the frequency transients accompanying the submersion of a polymer coated QCM quartz crystal in water
Yoo H., Bruckenstein S., Pater E.
Electropolymerization of magnesium 5,15-di(n-methoxyphenyl)porphine
Konev D., Lizgina K., Istakova O., Baulin V., Kalashnikova I., Devillers C., Vorotyntsev M.
Specific Features of Ion Transport in New Nanocomposite Gel Electrolytes Based on Cross-Linked Polymers and Silica Nanoparicles
Baymuratova G., Chernyak A., Slesarenko A., Tulibaeva G., Volkov V., Yarmolenko O.
A phenomenological description of charge transfer within polaron-containing films with unramified polymer chains
Malev V.
Preparation of cobalt polyporphine and its catalytic properties in oxygen electroreduction
Konev D., Lizgina K., Khairullina D., Shamraeva M., Devillers C., Vorotyntsev M.
Efficiency of Pyrrole Electropolymerization under Various Conditions
Istakova O., Konev D., Medvedeva T., Zolotukhina E., Vorotyntsev M.
On the contamination of membrane–electrode assembles of water electrolyzers with solid polymer electrolyte by the elements of titanium alloys
Grigoriev S., Bessarabov D., Glukhov A.
Effect of ionic liquid 1-butyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide on the properties of poly(glycidyl methacrylate) based solid polymer electrolytes
Imperiyka M., Hanifah S., Ahmad A., Hassan N., Rahman M., Nabilah M., Alwi M., Su’ait M.
Fast and Sensitive Detection of Diisononyl Phthalate in Liquor Sample by Molecularly Imprinted Polymer Based Electrochemical Sensor
Zhao X., Ju X., Qiu S., Hu W., Yang L., Zhang J.
Carbon nanofiber paper cathode modification for higher performance of phosphoric acid fuel cells on polybenzimidazole membrane
Skupov K., Ponomarev I., Razorenov D., Zhigalina V., Zhigalina O., Ponomarev I., Volkova Y., Volfkovich Y., Sosenkin V.
Computer-aided simulation of the cathodic active layer in fuel cells with solid polymer electrolyte: the nature of overall current transient
Chirkov Y., Rostokin V., Kuzov A.
Determination of Sulfite in Real Sample by an Electrochemical Sensor Based on Ni/Poly(4-Aminobenzoic Acid)/Sodium Dodecylsulfate/Carbon Paste Electrode
Norouzi B., Parsa Z.
Electrochemical behavior of nickel–polyaniline electrode in 1 M LiClO4–propylene carbonate electrolyte
Tkachenko L., Nikolaeva G., Efimov O.
The Effect of Electrode Potential on the Conductivity of Polymer Complexes of Nickel with Salen Ligands
Beletskii E., Volosatova Y., Eliseeva S., Levin O.
Computer Simulation of the Cathode Active Layer in Hydrogen–Oxygen Fuel Cell with Polymer Electrolyte: The Nature of the Overall Current Variations
Chirkov Y., Andreev V., Rostokin V., Kuzov A.
Degradation mechanisms of MEA characteristics during water electrolysis in solid polymer electrolyte cells
Grigoriev S., Bessarabov D., Fateev V.
Some Observations on the Electrochemical Reactions of Bisphenol A on Polycrystalline Gold in Contact with 0.1 M Aqueous NaClO4 Solution
Szekeres K., Fekete É., Ujvári M., Vesztergom S., Kondratiev V., Láng G.
Nanocomposite Polymer Electrolytes for the Lithium Power Sources (a Review)
Yarmolenko O., Yudina A., Khatmullina K.
Synthesis and study of catalysts of electrochemical oxygen reduction reaction based on polymer complexes of nickel and cobalt with Schiff bases
Novozhilova M., Smirnova E., Karushev M., Timonov A., Malev V., Levin O.
Impedance of LiFe0.4Mn0.6PO4 Electrodes with Combined Conducting Polymer Binder of PEDOT:PSS and Carboxymethyl Cellulose
Apraksin R., Eliseeva S., Kamenskii M., Tolstopyatova E., Lang G., Kondrat’ev V.
Anode with the Active Layer for Electrosynthesizing Ozone in a System with Solid Polymer Electrolyte
Akel’kina S., Pushkarev A., Grigoriev S., Pushkareva I., Fateev V.
Potentially implantable biocathode with the function of charge accumulation based on nanocomposite of polyaniline/carbon nanotubes
Parunova Y., Bushnev S., Gonzalez-Arribas E., Falkman P., Lipkin A., Popov V., Shleev S., Pankratov D.
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