Electrochemical Study of Nd and Pr Co-Deposition onto Mo and W from Molten Oxyfluorides

Электрохимическое исследование совместного осаждения Nd и Pr на Mo и W из расплавленных оксифторидов
Vesna S. Cvetković, Dominic Feldhaus, Nataša M. Vukićević, Tanja Barudžija, Bernd Friedrich, Jovan N. Jovićević
2021-09-21

Nd–Pr co-depositioncyclic voltammetryelectrochemical reductionmolten oxyfluoride electrolytesrare earth metal recycling
Electrodeposition processes of neodymium and praseodymium in molten NdF3 + PrF3 + LiF + 1 wt.%Pr6O11 + 1 wt.%Nd2O3 and NdF3 + PrF3 + LiF + 2 wt.%Pr6O11 + 2 wt.%Nd2O3 electrolytes at 1323 K were investigated. Cyclic voltammetry, square wave voltammetry, and open circuit potentiometry were applied to study the electrochemical reduction of Nd(III) and Pr(III) ions on Mo and W cathodes. It was established that a critical condition for Nd and Pr co-deposition in oxyfluoride electrolytes was a constant praseodymium deposition overpotential of ≈−0.100 V, which was shown to result in co-deposition current densities approaching 6 mAcm−2. Analysis of the results obtained by applied electrochemical techniques showed that praseodymium deposition proceeds as a one-step process involving exchange of three electrons (Pr(III)→Pr(0)) and that neodymium deposition is a two-step process: the first involves one electron exchange (Nd(III)→Nd(II)), and the second involves an exchange of two electrons (Nd(II)→Nd(0)). X-ray diffraction analyses confirmed the formation of metallic Nd and Pr on the working substrate. Keeping the anodic potential to the glassy carbon working anode low results in very low levels of carbon oxides, fluorine and fluorocarbon gas emissions, which should qualify the studied system as an environmentally friendly option for rare earth metal deposition. The newly reported data for Nd and Pr metals co-deposition provide valuable information for the recycling of neodymium-iron-boron magnets.
1
A constant praseodymium deposition overpotential of approximately −0.100 V was critical for Nd–Pr co-deposition, producing current densities approaching 6 mA cm−2.
2
Maintaining a low anodic potential produced very low carbon oxide, fluorine, and fluorocarbon emissions, indicating potential environmental benefits for rare-earth deposition and magnet recycling.
3
Nd and Pr electrodeposition was investigated at 1323 K from two molten NdF3–PrF3–LiF oxyfluoride electrolytes with different oxide concentrations.
4
Praseodymium reduction proceeds in a single three-electron step from Pr(III) to metallic Pr, whereas neodymium reduction occurs through sequential Nd(III)→Nd(II) and Nd(II)→Nd(0) steps.
5
X-ray diffraction confirmed formation of metallic neodymium and praseodymium on molybdenum and tungsten cathode substrates.

Neodymium and praseodymium co-deposition from molten oxyfluoride electrolytes onto Mo and W cathodes

Electrochemical reduction pathways and co-deposition conditions of Nd(III) and Pr(III), including deposition overpotential, current density, electron-transfer mechanisms, and metallic deposit formation

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2021-09-21
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Vesna S. Cvetković
Dominic Feldhaus
Nataša M. Vukićević
Tanja Barudžija
Bernd Friedrich
Jovan N. Jovićević
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