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Electrochemical Formation of Nd Alloys Using Liquid Metal Electrodes in Molten LiCl-KCl Systems

机译:熔融LiCL-KCL系统中使用液态金属电极的Nd合金电化学形成

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We focused on the liquid metals as the alloy diaphragms. Liquid metals have higher diffusion rates of elements than those of solid metals during the electrolysis. For the first step, in this work Sn electrodes were used as liquid metal electrodes. The alloy samples were prepared by potentiostatic electrolysis using liquid Sn electrodes in molten LiCl-KCl added DyCl_3 (0.50 mol%) and NdCl_3 (0.50 mol%) at 723 K. As the first step, electrochemical formation of RE-Sn (RE = Dy, Nd) alloys were investigated in LiCl-KCl eutectic melts containing DyCl_3 (0.50 mol%) or NdCl_3 (0.50 mol%). The samples of Nd-Sn alloys were prepared by potentiostatic electrolysis at 0.60, 0.70, 0.80, 1.00 V (vs. Li~+/Li) for 0.50 h using liquid Sn electrodes in LiCl-KCl-NdCl_3 (0.50 mol%) melts. The formation of Nd-Sn alloys were confirmed by the XRF analysis of all samples. Moreover, potentiostatic electrolysis were conducted at 0.60 and 0.70 V for 0.50 h in LiCl-KCl-DyCl_3 (0.50 mol%)-NdCl_3 (0.50 mol%) melts. The formation of Dy-Nd-Sn alloys were confirmed in the bottom portion of liquid Sn electrodes. The atomic ratios of Nd/Dy in both alloy samples were 3.50.
机译:我们专注于液体金属作为合金膜片。液体金属具有比电解过程中的固体金属更高的元素扩散速率。对于第一步,在该工作中,使用SN电极作为液态金属电极。通过在723k中使用熔融LICL-KCl -KCl-Kcl(0.50mol%)和NdCl_3(0.50mol%)中的液体Sn电极在723K中使用液体Sn电极制备合金样品。作为第一步,Re-Sn的电化学形成(Re = Dy在含有DYCl_3(0.50mol%)或NdCl_3(0.50mol%)的LiCl-Kcl共晶熔体中研究了Nd)合金。使用LiCl-Kcl-NdCl_3(0.50mol%)熔体中的液体Sn电极,通过0.60,0.70,0.80,1.00V(与Li + / Li)的液滴电解制备Nd-Sn合金的样品。通过所有样品的XRF分析证实了ND-Sn合金的形成。此外,在LiCl-kCl-DYCl_3(0.50mol%) - NdCl_3(0.50mol%)熔体中,在0.60和0.70V下进行0.60小时的电位电解。在液体Sn电极的底部确认Dy-Nd-Sn合金的形成。两种合金样品中Nd / dy的原子比为3.50。

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