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Preparation and properties of raney nickel electrodes on Ni-Zn base for H2 and O2 evolution from alkaline solutions Part I: electrodeposition of Ni-Zn alloys from chloride solutions
Authors:J. Balej  J. Divisek  H. Schmitz  J. Mergel
Affiliation:(1) Consultant Bureau for Chemical Engineering, Teichstrasse 9, D-5170 Jülich, Germany;(2) Research Centre (KFA) Jülich, Institute of Applied Physical Chemistry, P.O. Box 1913, D-5170 Jülich, Germany;(3) Present address: Johanniterstrasse 28, D-8850 Donauwörth, Germany
Abstract:Experimental results for the electrodeposition of Ni-Zn alloys from chloride solutions, with addition of H3BO3 and without other additives, in a laboratory cell with a perforated nickel sheet cathode and with recirculating electrolyte are presented. The dependence of the zinc content in the alloy on the following operating conditions was investigated: cathodic current density, 1.0–20.0 A dm–2; temperature, 35–65°C; pH 1.5–5.5; total molarity,Mtot=MNi2++MZn2+=1.1–2.8 M; and, molar ratio,P=MNi2+/MZn2+=1.0–15. Depending on the operating conditions the Zn content in the alloy varied over the range 22–88 mol%. In separate experiments galvanostatic polarization curves were measured in the direction of increasing and then decreasing cathodic current density in the range 0.1–20.0 A dm–2 with all other operating conditions as used for electroplating experiments. In all cases significant hysteresis effects were observed. It was found that the current efficiency for the electrodeposition of Ni-Zn alloys from chloride solutions as a function of the zinc content in the alloy showed a sharp minimum of about 55% atXZn=55 mol % irrespective of other operating conditions.
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