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Effects of Rare Earth La-Yb Doping on Microstructure and Electrochemical Performance of Magnesium Alloys Used as Anode for Seawater Batteries
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Affiliation:

College of Materials Science and Engineering, Sichuan University, Chengdu 610065, China

Clc Number:

TG146.22

Fund Project:

Science Fund of Sichuan Province for Distinguished Young Scholars Sichuan Science (No.2023NSFSC1942) and the National Double First-class Universities Construction Grant of Sichuan University (No.2020SCUNG201)

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    Abstract:

    AZ91-La-Yb magnesium alloy as anode of seawater batteries was prepared by combining mechanical alloying with spark plasma sintering processes. The effects of rare earth La-Yb doping on the microstructure and electrochemical behavior of AZ91 anode were studied. The results show that the AZ91-La-Yb alloy prepared by mechanical alloying-spark plasma sintering processes consists of equiaxed grains. On the one hand, La-Yb doping results in the formation of micron-scale (0.5–2 μm) RE-rich phase that are uniformly distributed at grain boundaries. This phase is mainly composed of rare earth metals (RE=La, Yb) and Mg(RE) solid solution. On the other hand, the plastic deformation caused by discharge plasma sintering and the doping effect of rare earth elements La-Yb significantly improve the morphology of β-Mg17Al12 phase, transforming from a coarse network structure to a slender elongated shape. The combination of uniform distribution of nearly micron-scale RE-rich phase and the smaller β phase promotes the uniform dissolution of magnesium alloys and effectively alleviates localized corrosion of magnesium alloys. Compared to the AZ91 anode magnesium alloy, the AZ91-La-Yb alloy doped with rare earth La-Yb exhibits more stable discharge voltage and excellent discharge performance. At a current density of 20 mA/cm2, its specific capacity can reach 1068 mAh/g, and the anode utilization efficiency is 50.4%.

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[Yang Qingzhu, Lian Lixian, Liu Ying. Effects of Rare Earth La-Yb Doping on Microstructure and Electrochemical Performance of Magnesium Alloys Used as Anode for Seawater Batteries[J]. Rare Metal Materials and Engineering,2025,54(3):755~764.]
DOI:10.12442/j. issn.1002-185X.20230730

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History
  • Received:November 16,2023
  • Revised:January 09,2024
  • Adopted:January 31,2024
  • Online: March 25,2025
  • Published: March 25,2025