2) LiFePO4
LiFePO_4
1.
Influence of the Mg-substitution on electrochemical performances of LiFePO4;
Mg掺杂对LiFePO_4材料电化学性能的影响
2.
The LiFePO4 were synthesized by means of carbonthermal reduction method, sintering the FePO4 precursor and Li2CO3 and glucose in inert atmosphere.
通过控制结晶法制备球形前驱体FePO_4·xH_2O,经过预烧得到高密度的FePO_4,与Li_2CO_3和葡萄糖均匀混合,采用碳热还原法合成锂离子蓄电池正极材料球形磷酸铁锂(LiFePO_4)。
3) LiFePO_4/C composite
LiFePO_4/C材料
1.
In this thesis, LiFePO_4/C composite was synthesized by solid-state reaction.
结合XRD、SEM、恒电流充放电、CV、和EIS分析LiFePO_4/C的结构和电化学行为;并且分别探讨了元素V和Ti以及阴离子F掺杂对LiFePO_4/C材料电化学性能的影响。
4) LiFePO_4 battery
LiFePO_4电池
1.
However,general safety performance of lithium-ion battery applications can not meet the requirements of the mine,so it has not been applied in the coal mine equipment until LiFePO_4 battery is developed in recent years.
近年来发展起来的LiFePO_4电池因其正极材料稳定性高、安全性能优越等特点,正逐步应用于矿用领域。
补充资料:玻璃钢球形气瓶在缠绕中
玻璃钢球形气瓶在缠绕中
玻:K钠球卅’气Hl、在鲤r*中 咯尔#破璃捆研究。t’0稿
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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