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1. Electrochemical Capacitors And Lithium-ion Battery Cathode Materials
2. Synthesis And Electrochemical Properties Of Li3V2(PO4)3/C And LiV3O8 Cathode Materials For Lithium-ion Batteries
3. Synthesis, Structure And Performance Of LiFePO4/Li1.3Al 0.3Ti1.7(PO4)3 /C
4. Synthesis, Structure And Performance Of LiFePO4 /C By Mechanical Activation Combined With Carbothermal Reduction Method
5. A Study On Performance Of Conductive Polyaniline Used As A Positive Electrode Of Battery
6. Nickel-hydrogen Battery Cathode Materials For The ¦Â-type Nickel Hydroxide Modified Surface Preparation Technology And High-temperature And High-rate Electrochemical Performance
7. Research On Lithium Iron Phosphate As Cathode Material By Hydrothermal Synthesis
8. Study On Improving The Property Of Iron Negative Electrode For Rechargeable Fe-Ni Battery
9. Improved Electrochemical Properties Of FeS2as Anode Materials For Lithium-ion Batteries
10. Study On Preparation And Electrochemical Properties Of Lithium Ion Battery Electrode Materials Of Graphene And Lithium Iron Phosphate
11. Synthesis, Characterization And Research On The Electrochenmical Properties Of The Nanoparticles Of Titanium Mixed-anion Oxyfluorides And The Lithiated Product
12. The Preparations Of Nano Co, Ni, Mo Oxide, Selenide And Their Applications In Anode Materials Of Lithium-ion Batteries
13. Studies On Applications Of Super-aligned Carbon Nanotube Films In Lithium Ion Batteries
14. Improvement On Performance Of LiFePO4/C Cathode Materials For Lithium Ion Batteries
15. The Study On C/Al Composite Foil For Solid Alytialuminum Electroc Capacitor
16. Study On Improvement Of Specific Capacity And Rate Performance Of AC/Li4Ti5O12 Hybrid Supercapacitor
17. Electrochemical Performance Of Si/C Omposite Anode As Anode For Li-ion Battery
18. Perparation Of Conductive Carbon Net Skeleton And Their Supercapacitor Performance
19. Effect On The Structure Morphology And Electrical Properties Of Spinel LiMn2O4by Synthesis Of Special Micro/Nano Structure Manganese Oxide
20. Study On Improvement Of Specific Capacity And Rate Performance Of Li-MnO2Battery
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