Development of cathodic electrocatalysts for use in low temperature H2/O2 fuel cells with an alkaline electrolyte, January 1-31, 1966
Cathodic electrocatalyst development for use in low temperature hydrox fuel cell in alkaline electrolyte
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Cathodic electrocatalyst development for use in low temperature hydrox fuel cell in alkaline electrolyte
Cathodic electrocatalysts for use in low temperature hydrogen oxygen fuel cells with alkaline electrolyte
Cathodic electrocatalysts development for use in low temperature hydrogen-oxygen fuel cells with alkaline electrolyte
Cathodic electrocatalyst materials studied for use in low temperature hydrogen oxygen fuel cells with alkaline electrolyte
Development of cathodic electrocatalysts for use in low temperature hydrogen-oxygen fuel cells with alkaline electrolyte
Metal, alloy, and metal compound testing for corrosion resistance and activity as oxygen electrodes for hydrox fuel cell with alkaline electrolyte
Carbides, nitrocarbides of nickel, cobalt alloys, and nickel-cobalt alloys evaluated for electrocatalysts in low temperature hydrogen peroxide fuel cells with alkaline electrolyte
Cathodic electrocatalysts for use in low temperature hydrogen-oxygen fuel cells with an alkaline electrolyte-corrosion resistance and activity testing of materials and elements
Improved oxygen electrode for alkaline hydrox fuel cells
Potentiostatic and corrosion resistance tests for metallic ingots prepared as rotating disk electrodes - cathodic electrocatalysts for use in low temperature hydrogen-oxygen fuel cells
Oxygen reduction on titanium nitride noting rate of electrochemical oxidation in fuel cell studies
Carbides, nitrides, nitrocarbides, and carbonitrides of iron examined for catalytic activity in oxygen reduction reaction in potassium hydroxide - peroxide fuel cells
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Gold alloys electrocatalytic activity in cathodic reduction of oxygen in potassium hydroxide
A leakproof seal secondary cell containing alkaline electrolytes was developed by bonding an alkali-resistant elastomer, such as neoprene, to metal contact surfaces. Test results of several different elastomers strongly indicate the feasibility of this sealing method.
Cathodic catalysts evaluated for hydrazine-air fuel cells employing alkaline electrolytes
Zincate diffusivity in alkaline electrolyte determined as function of potassium hydroxide concentration and temperature
Separator decreases the partial pressure of hydrogen gas dissolved in the water produced by fuel cells containing an alkaline electrolyte. The unit eliminates the hazards associated with the release of hydrogen from water solution when the hydrostatic pressure is rapidly decreased.