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卞沛文 努丽燕娜 陈强 杨军 王久林
电化学, 2014, Volume: 20, Issue: 1Journal Article
将乙烯硫脲与不同格氏试剂EtMgBr/THF、PhMgBr/THF、PhMgCl/THF反应制得了3种乙烯硫脲一格氏试剂/TI-IF电解液.通过循环伏安测试了在Pt电极上的镁沉积.溶出性能.结果表明。形成的乙烯硫脲.格氏试剂/THF电解液未改变电解液的镁沉积一溶出性能,却拓宽了其电化学窗VI.如乙烯硫脲.PhMgBr/THF溶液的氧化分解电位可达2.3V(vs.Mg^2+),该电解液的电导率随溶液溶度增大先升后降,0.9mol·L。时其电导率最高,可达615μS·cm^-1.比较乙烯硫脲.PhMgBr/THF在Pt、Ni、Cu和Al四种金属电极的电化学性能,发现在Ni电极的氧化分解电位最高,可达2.4V(vs.Mg/Mgn),且具有良好的镁沉积一溶出性能.CR2016扣式电池的循环测试表明,Ni基底上的镁沉积招出电位较低,其循环效率可达到92%,适宜作为实用电池的集流体.
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