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The work concerned the electrochemical behaviors of Y(III) on W and Ni electrodes in molten LiCl-KCl salts by a series of electrochemical techniques. The electrochemical reaction of Y(III) to Y(0) proceeded in a one-step reduction process with the ex-change of three electrons, Y(III)+3e–→Y(0). Compared with the cyclic voltammogram and square wave voltammogram obtained on W electrode, the reduction potential of Y(III) on Ni electrode was observed at less negative potential than the one of Y(III) to give pure Y metal on W electrode, which revealed the occurrence of underpotential deposition of Y(III) on Ni electrode. Electromotive force (emf) measurements were performed to calculate the relative partial molar Gibbs energies and activities of Y in Y-Ni alloys. The standard Gibbs energies of formation for different Y-Ni intermetallic compounds were also estimated. The different Y-Ni alloys were formed by potentiostatic electrolysis at different potentials and characterized by X-ray diffraction (XRD), scanning electron mi-croscopy (SEM), and energy dispersive spectrometry (EDS). It was found that four intermetallic compounds, YNi5, Y2Ni7, YNi3 and YNi2, were selectively produced by controlling applied potential.

参考文献

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[6] Takahisa Iida;Toshiyuki Nohira;Yasuhiko Ito.Electrochemical formation of Sm-Ni alloy films in a molten LiCl-KCl-SmCl_3 system[J].Electrochimica Acta,200116(16):2537-2544.
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[8] Matar, S.F.;Nakhl, M.;Al Alam, A.F.;Ouaini, N.;Chevalier, B..YNi and its hydrides: Phase stabilities, electronic structures and chemical bonding properties from first principles[J].Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature,20101/3(1/3):109-114.
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