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1.
Reasearch on the Nano Composites of Graphite Materials
锂离子电池纳米复合碳负极材料的研究
2.
Development of Noncarbonaceous Anode Material of Li-ion Secondary Battery
锂离子二次电池非碳负极材料的研究进展
3.
Researches on the Application of Carbon Nanotubes for Negative Material of Ni/MH Battery;
纳米碳管在镍氢电池负极材料中的应用研究
4.
Research Progress in Si/C Composites as Anodes for Lithium-ion Batteries
锂离子电池硅/碳复合负极材料的研究进展
5.
Electrochemical performance of carbon nanotubes as anode materials for lithium ion battery
锂离子电池碳纳米管负极材料储锂性能研究
6.
Carbon hybrid as anode material for super lithium ion capacitor
超级电容电池用碳类复合负极材料的研究
7.
Nano-Sn/Hard Carbon Composite as Anode Material for Lithium Ion Batteries
纳米锡/硬碳复合材料作为嵌锂负极的研究
8.
CAW were firstly reported to be applied as a cathode of the lithium-ion secondary batteries in the dissertation.
本文首次将碳原子线用作锂离子二次电池的负极材料。
9.
Synthesis and Electrochemical Studies on High Capacity Si/C Composite Anodes for Lithium-ion Batteries;
二次锂电池中高容量硅/碳复合负极材料的合成及电化学研究
10.
Preparation and Investigation of Carbon-based and Tin-based Anode Materials for Li-ion Batteries
碳基及锡基锂离子电池负极材料的制备及性能研究
11.
Cycleability of Silicon/Carbon Composite for Lithium-Ion Batteries
锂离子电池负极硅/碳复合材料循环稳定性的研究
12.
Structure and electrochemical performance of nanostructured Fe_3O_4/CNTs composites as anodes for lithium ion batteries
碳纳米管/Fe_3O_4纳米复合负极材料的制备与储锂性能研究
13.
Preparation of Amorphous Carbon-coated Nano-scale SnO_2 and its Performance for Anode Material of Lithium Ion Secondary Battery
碳包覆纳米SnO_2锂离子电池负极材料合成及其性能研究
14.
The investigated anode materials include modified carbons,nitrides ,silicides ,oxides and novel alloys.
研究的负极材料主要有:改性碳材料、氮化物、硅化物、氧化物和新型合金。
15.
Carbon nanotube( CNT) is perfect material as field emission cathode.
碳纳米管(NT)为理想的场发射阴极材料。
16.
The Research on Preparation of Carbon Electrode Materials by Microwave Radiation for Supercapacitors;
超级电容器碳电极材料微波制备研究
17.
Synthesis of cathode material LiFePO_4/C with a carbon bath calcining process
碳浴焙烧工艺合成LiFePO_4/C正极材料
18.
Effects of carbon source on the performance of LiFePO_4/C cathode material
碳源对LiFePO_4/C正极材料性能的影响