Ma Jingling, Hu Pengfei, Jia Xingliang, Zhang Chenfei, Wang Guangxin
Research Center for High Purity Materials, Henan University of Science and Technology Luoyang 471023 PR China
Collaborative Innovation Center of Nonferrous Metals, Henan Province, Henan University of Science and Technology Luoyang 471023 PR China.
RSC Adv. 2021 Feb 15;11(13):7502-7510. doi: 10.1039/d0ra10528g. eCollection 2021 Feb 10.
In order to limit the anode corrosion and improve the battery activity, magnesium-air batteries with organic/inorganic double solutions (0.5 M Mg(ClO)-,-dimethylformamide (DMF)/0.6 M NaCl-HO, 0.5 M Mg(ClO)-acetonitrile (AN)/0.6 M NaCl-HO) were prepared. The discharge performance, discharge morphology, and corrosion performance of magnesium anode were researched. Results obtained show that organic electrolytes separate the anode from the aqueous electrolyte, thus improving the anode utilization rate. Due to the NaCl electrolyte used in the air cathode side, batteries show higher discharge voltages. As an example, a better discharge performance has been observed in Mg(ClO)-DMF/NaCl-HO double electrolytes at 1 mA cm discharge. This is attributed to there being no obvious absorption of corrosion products on the anode surface. The results of the discharge morphology and electrochemical impedance spectroscopy agree well with the discharge performance. The magnesium anode discharge mechanism is different for different solutions.
为了限制阳极腐蚀并提高电池活性,制备了具有有机/无机双溶液(0.5 M Mg(ClO)₄ - N,N - 二甲基甲酰胺(DMF)/0.6 M NaCl - H₂O、0.5 M Mg(ClO)₄ - 乙腈(AN)/0.6 M NaCl - H₂O)的镁空气电池。研究了镁阳极的放电性能、放电形态和腐蚀性能。所得结果表明,有机电解质将阳极与水性电解质隔开,从而提高了阳极利用率。由于空气阴极侧使用了NaCl电解质,电池显示出更高的放电电压。例如,在1 mA cm⁻²放电时,Mg(ClO)₄ - DMF/NaCl - H₂O双电解质中观察到了更好的放电性能。这归因于阳极表面没有明显的腐蚀产物吸附。放电形态和电化学阻抗谱的结果与放电性能吻合良好。不同溶液中镁阳极的放电机制不同。