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首页> 外文期刊>Electrochimica Acta >The influence of samarium (Sm) on the discharge and electrochemical behaviors of the magnesium alloy AZ80 as an anode for the Mg-air battery
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The influence of samarium (Sm) on the discharge and electrochemical behaviors of the magnesium alloy AZ80 as an anode for the Mg-air battery

机译:钐(SM)对镁合金AZ80作为Mg - 空气电池阳极的放电和电化学行为的影响

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摘要

The influence of Sm on the microstructure, electrochemical properties, and discharge performance of cast AZ80 as the anode for Mg-air battery are investigated. AZ80 containing Sm has refined alpha-Mg grains and contains the Al2Sm phase. With increasing Sm content, the number and size of the Mg17Al12 phase particles are reduced. The AZ80-xSm anodes have higher electrochemical activity and lower self-corrosion rates than AZ80. The AZ80-xSm anodes also have a high discharge performance and a stable discharge voltage, which is attributed to the refined structure and Al2Sm particles. The AZ80-3Sm anode has the best discharge capacity of 1439 mAh g(-1) and the best anode efficiency of 65% at 40 mA cm(-2), which are 17% and 20% higher than for the AZ80 anode. This anode has an output peak energy of 1719 mWh g(-1) at both 10 and 20 mA cm(-2), compared with 1510 mWh g(-1) for AZ80 at only 20 mA cm(-2). The AZ80-xSm anodes have smoother discharge surface morphology, which is beneficial to the exfoliation of discharge products. (C) 2020 Elsevier Ltd. All rights reserved.
机译:研究了SM对铸造AZ80作为Mg-空气电池阳极的微观结构,电化学性能和放电性能的影响。 AZ80含有SM具有精制α-Mg晶粒并含有Al2SM相。随着SM含量的增加,Mg17Al12相粒子的数量和尺寸减小。 AZ80-XSM阳极具有更高的电化学活性和比AZ80更低的自腐蚀率。 AZ80-XSM阳极还具有高放电性能和稳定的放电电压,其归因于精制结构和Al2SM颗粒。 AZ80-3SM阳极具有1439mAhg(-1)的最佳放电容量,最佳阳极效率为40 mA cm(-2),比AZ80阳极高出17%和20%。该阳极在10和20 mA cm(-2)上具有1719 mwh g(-1)的输出峰值能量,而AZ80仅为20 mA cm(-2),则为1510 mwh g(-1)。 AZ80-XSM阳极具有更光滑的放电表面形态,这有利于放电产品的去角质。 (c)2020 elestvier有限公司保留所有权利。

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