Aluminum-magnesium (Al-Mg) alloys were potentiostatically electrodeposited on copper using Al anode at 180 °C from 62AlCl(3)â+â17NaClâ+â15KClâ+â6MgCl(2) electrolyte. The depositions are categorized into two groups based on current density-time curves and deposit compositions. Group 1 corresponds to overpotentials from -â1.05 to -â1.10 V, and Group 2 from -â1.15 to -â1.30 V. Morphologies within Group 1 possess almost pure Al and coarsen with overpotential; while those in Group 2 possess Al and Mg, and refine with overpotential. Based on electrochemical, compositional, and spectral analyses, a generic deposition scheme is proposed. Mathematical variables in this scheme are adjusted rendering it suitable for both groups. Sources of Al for deposition are [Formula: see text], and [Formula: see text]; that of Mg is MgCl(2) (possibly forming complexes in electrolyte). Al anodic dissolution occurs significantly in Group 1. Na(AlCl(4)) formation and Cl(2) evolution occur at anode in Group 2. The proposed scheme is used to devise the following corollaries: (i) Al deposits preferentially in both groups; (ii) Mg deposition is prerequisite for Na(AlCl(4)) formation; (iii) Deposited Mg is curtailed to maximum of ~â4.02 at.% by Na(AlCl(4)); and (iv) A minimum threshold exists for Al/Mg deposit composition ratios. The scheme and corollaries answer questions of practical and fundamental importance.
Electrodeposition of Al-Mg alloys from chloride-based molten salts.
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作者:Bhaskaramohan Sreesvarna, Prasad Manepalli J N V, Jonnalagadda G V Dattu, Tatiparti Sankara Sarma V
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 May 30; 15(1):19092 |
| doi: | 10.1038/s41598-025-04094-1 | ||
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