Kinetic model of induced codeposition of Ni-Mo alloys

来源 :Chinese Journal of Chemistry | 被引量 : 0次 | 上传用户:zhifuhu
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The kinetic model of induced codeposition of nickel-molybdenum alloys from ammoniun citrate solution was studied on rotating disk electrodes to predict the behavior of the electrode-position. The molybdate (MoO42-) could be firstly electro-chemically reduced to MoO2, and subsequently undergoes a chemical reduction with atomic hydrogen previously adsorbed on the inducing metal nickel to form molybdenum in alloys. The kinetic equations were derived, and the kinetic parameters were obtained from a comparison of experimental results and the kinetic equations. The electrochemical rate constants for discharge of nickel, molybdenum and water could been expressed as k1(E) = 1. 23 × 109 CNi exp( - 0.198FE/RT) mol/(dm2·s), k2(E) =3.28× 10-10 CMoexp( - 0. 208FE/ RT) mol/(dm2·s) and k3(E) = 1.27 × 10-6exp( - 0.062FE/ RT) mol/(dm2 · s), where CNi and CMo are the concentrations of the nickel ion and molybdate, respectively, and E is the applied potential vs. saturated calomel electrode (SCE). The codeposition p The kinetic model of induced codeposition of nickel-molybdenum alloys from ammoniun citrate solution was studied on rotating disk electrodes to predict the behavior of the electrode-position. The molybdate (MoO42-) could be substituted electro-chemically reduced to MoO2, and subsequently undergoes a chemical reduction with atomic hydrogen previously adsorbed on the inducing metal nickel to form molybdenum in alloys. The kinetic equations were derived, and the kinetic parameters were obtained from a comparison of experimental results and the kinetic equations. The electrochemical rate constants for discharge of nickel , molybdenum and water could have been expressed as k1 (E) = 1.23 × 109 CNi exp (- 0.198 FE / RT) mol / (dm2 · s), k2 (E) = 3.28 × 10-10 CMoexp 208FE / RT) mol / (dm 2 · s) and k3 (E) = 1.27 × 10 -6exp (-0.062 FE / RT) mol / (dm 2 · s), where CNi and CMo are the concentrations of the nickel ion and molybdate , respectively, and E is the applied potential vs. saturated calomel electrode (SCE). The codeposition p
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