通过计时电位法和电化学阻抗谱技术研究Mg(NO_3)_2+Mg(ClO_4)_2复合电解液中AZ31B镁合金电极的放电性能和电压滞后,并初步探讨了镁合金电极表面腐蚀膜的结构变化。结果表明:AZ31B合金在Mg(NO_3)_2:Mg(ClO_4)_2溶液体积比为72∶28和74∶2...通过计时电位法和电化学阻抗谱技术研究Mg(NO_3)_2+Mg(ClO_4)_2复合电解液中AZ31B镁合金电极的放电性能和电压滞后,并初步探讨了镁合金电极表面腐蚀膜的结构变化。结果表明:AZ31B合金在Mg(NO_3)_2:Mg(ClO_4)_2溶液体积比为72∶28和74∶26时恒流放电曲线平稳,在2.5和6 m A·cm^(-2)放电时稳定电位均可达到约-1.24 V,电压滞后时间为5~8 s;放电后表面膜的化学基团与放电前相同,放电破坏了镁合金电极表面腐蚀膜,造成连续串珠状点蚀坑,其膜电阻消失,电荷转移电阻减小至375Ω·cm^2。展开更多
A novel PEO-based composite polymer electro-lyte by using organic-inorganic hybrid EO20PO70EO20-em- mesoporous silica (P123-em-SBA15) as the filler has been developed. The experiment results show that P123-em- SBA15 c...A novel PEO-based composite polymer electro-lyte by using organic-inorganic hybrid EO20PO70EO20-em- mesoporous silica (P123-em-SBA15) as the filler has been developed. The experiment results show that P123-em- SBA15 can enhance the lithium-ion transference number of the composite polymer electrolyte, which is induced by the special topology structure of P123 in P123-em-SBA15 hybrid. In addition, room temperature ionic conductivity of the composite polymer electrolyte can also be increased by about two orders of magnitude. The excellent lithium transport properties suggest that PEO-LiClO4-P123-em-SBA15 com-posite polymer electrolyte can be used as electrolyte materi-als for all solid-state rechargeable lithium polymer batteries.展开更多
文摘通过计时电位法和电化学阻抗谱技术研究Mg(NO_3)_2+Mg(ClO_4)_2复合电解液中AZ31B镁合金电极的放电性能和电压滞后,并初步探讨了镁合金电极表面腐蚀膜的结构变化。结果表明:AZ31B合金在Mg(NO_3)_2:Mg(ClO_4)_2溶液体积比为72∶28和74∶26时恒流放电曲线平稳,在2.5和6 m A·cm^(-2)放电时稳定电位均可达到约-1.24 V,电压滞后时间为5~8 s;放电后表面膜的化学基团与放电前相同,放电破坏了镁合金电极表面腐蚀膜,造成连续串珠状点蚀坑,其膜电阻消失,电荷转移电阻减小至375Ω·cm^2。
文摘A novel PEO-based composite polymer electro-lyte by using organic-inorganic hybrid EO20PO70EO20-em- mesoporous silica (P123-em-SBA15) as the filler has been developed. The experiment results show that P123-em- SBA15 can enhance the lithium-ion transference number of the composite polymer electrolyte, which is induced by the special topology structure of P123 in P123-em-SBA15 hybrid. In addition, room temperature ionic conductivity of the composite polymer electrolyte can also be increased by about two orders of magnitude. The excellent lithium transport properties suggest that PEO-LiClO4-P123-em-SBA15 com-posite polymer electrolyte can be used as electrolyte materi-als for all solid-state rechargeable lithium polymer batteries.