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1)  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。
2)  LiFePO_4/C composites
LiFePO_4/C复合材料
1.
In SEM pictures, the microstructure of LiFePO_4/C composites which are synthesized by solid phase method showed globular grain while grains obtained from liquid phase method are nubbly shape.
高温固相法中采用廉价的三价铁源、锂盐和铵盐以及不同含碳化合物按化学计量比在高温下发生还原反应,经二步灼烧工艺,得到一系列的锂离子二次电池正极LiFePO_4/C复合材料。
2.
Olivine cathode material LiFePO_4/C composites for lithium-ion battery were synthesized by a sol-gel routine in an inert atmosphere.
采用溶胶凝胶法合成了锂离子电池新型正极材料——橄榄石型LiFePO_4/C复合材料。
3)  LiFePO_4 cathode material
LiFePO_4正极材料
4)  LiFePO_4/polyacenic semiconductor material
LiFePO_4/PAS复合材料
5)  C/C
C/C材料
1.
A novel method called chemical liquid-vapor infiltration densification(CLVD) is studied which is used for the preparation of C/C composites.
介绍了一种新的C/C材料制备方法快速化学液气相渗透致密法。
2.
Heaterless chemical vapor infiltration(HCVI) is a novel method of preparation technology of C/C.
介绍了化学气相渗C/C材料在国内外的发展状况,指出落后的工艺技术阻碍了我国C/C产业的发展。
6)  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)。
补充资料:材料界面(见材料表面)


材料界面(见材料表面)
interface of materials

  材料界面interfaee of materials见材料表面。
  
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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