• Title of article

    In situ activation of a Ni catalyst with Mo ion for hydrogen evolution reaction in alkaline solution

  • Author/Authors

    Madram، Ali Reza نويسنده Faculty of Chemistry and Chemical Engineering,Malek-Ashtar University of Technology,Tehran,Iran , , Asadi، Samane نويسنده Faculty of Chemistry and Chemical Engineering,Malek-Ashtar University of Technology,Tehran,Iran ,

  • Issue Information
    فصلنامه با شماره پیاپی سال 2016
  • Pages
    8
  • From page
    151
  • To page
    158
  • Abstract
    In this study Ni catalyst have been activated during hydrogen evolution reaction (HER) by adding Mo ions into the alkaline electrolyte. After dissolving different amounts of ammonium molybdate in the 1M NaOH as electrolyte, Ni catalyst was used as cathode for HER. Afterwards a comparison between hydrogen overpotential measured in Ni catalyst with and without in situ activation has been made; the in situ activation shows an improvement of electrocatalytic properties of Ni catalyst for hydrogen evolution reaction. In the other words impact increase of in situ activation of Mo ions on the Ni structure, show that extremely significant impact in improving the Ni catalyst activation during in situ activation. The values of Tafel slope for Ni catalyst without Mo is an average of about 141 mVdec1, while by using in situ activation by activator Mo ion this value is about 172 mVdec1. As well as the values of overpotential for Ni catalyst, are an average of about 625 mV, by using in situ activation, these values are about 482 mV at the current density of 250 mAcm2 (η250). In this study electrochemical data obtained from linear sweep voltammetry (LSV), the steady state polarization Tafel curves, electrochemical impedance spectroscopy (EIS).
  • Keywords
    Hydrogen evolution reaction , In situ activation , Electrochemical impedance spectroscopy , Electrocatalytic activity
  • Journal title
    Iranian Journal of Hydrogen and Fuel Cell
  • Serial Year
    2016
  • Journal title
    Iranian Journal of Hydrogen and Fuel Cell
  • Record number

    2400797