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首页> 外文期刊>International journal of energy research >The role of Al2Ca and Al2(Sm,Ca,La) particles in the microstructures and electrochemical discharge performance of as‐extruded Mg‐3wt.Al‐1wt.Zn‐based alloys for primary Mg‐air batteries
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The role of Al2Ca and Al2(Sm,Ca,La) particles in the microstructures and electrochemical discharge performance of as‐extruded Mg‐3wt.Al‐1wt.Zn‐based alloys for primary Mg‐air batteries

机译:The role of Al2Ca and Al2(Sm,Ca,La) particles in the microstructures and electrochemical discharge performance of as‐extruded Mg‐3wt.Al‐1wt.Zn‐based alloys for primary Mg‐air batteries

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Summary In this work, the role of Al 2 Ca and Al 2 (Sm,Ca,La) particles in the microstructures and electrochemical discharge performance of the as‐extruded Mg‐3wt.Al‐1wt.Zn‐based alloys has been reported and discussed for the anode design of Mg‐air batteries. The Al 2 Ca and Al 2 (Sm,Ca,La) particles strongly refine the grains of the as‐extruded AZ31 alloy from 9.1?±?4.1?μm down to 5.1?±?3.3?μm. The Al 2 Ca and Al 2 (Sm,Ca,La) particles increase the outputting cell voltage and discharge capacity of the modified AZ31 alloy. The AZ31‐Ca alloy exhibits the highest discharge capacity and anodic efficiency of 1153?mAh/g and 52.5, respectively, at 10?mA/cm 2 . The promoted discharge performance should be mainly attributed to the grain refinement (improving the corrosion resistance) and fine Al 2 Ca phase throughout the matrix (beneficial for uniform dissolution of Mg phase). Additional Al 2 (Sm,Ca,La) cubic particles further stimulate the anodic kinetics and aggravate the local dissolution of Mg phase near around, resulting in the deterioration of discharge performance.

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