...正极 ; 磷酸亚铁锂 中图分类号 : TM 912. 9 文献标识码 :A 文章编号 :10022087 X ( 2003) 0320339204 [gap=754]Key words : lit hium ion battery ; cat hode ; Li FePO4 ...
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Such cathode with 200nm particles had micro/nano pore structure.
结果表明:此种阴极具有200nm左右的颗粒组成的多孔微纳结构。
参考来源 - 中低温SOFC微纳结构化电极的制备及性能研究The paper includes battery terminal positive pole and cathode pole identifying circuit,battery voltage detecting circuit,charger’s output voltage regulating circuit and charging state displaying circuit.
文中包括蓄电池正负极识别电路、蓄电池电压数值检测电路、充电器输出电压大小调整电路和不同输出电压状态指示电路。
参考来源 - 蓄电池共用不分正负极充电器设计The problem of cathode design is the key and difficult one should be solved first.
阴极设计是电解加工首先要解决的问题,也是电解加工中难以解决的问题。
参考来源 - 发动机叶片高精度电解加工阴极设计系统及实验研究Rare-earth-based hydrogen storage alloys are widely used as cathode materials of MH-Ni batteries for their advantages,such as,high energy density,high-rate discharge capacity,long cycle life and better consistence with environment,etc. At present,improving the capacity and the electrochemical property became hot research topic.
稀土系储氢合金以其能量密度高、高倍率充放电性能、长的循环寿命和良好的环境相容性等优点,被广泛用于MH-Ni电池负极材料。
参考来源 - 稀土系储氢合金电化学性能的研究现状The first charge and discharge capacity for VONTs is 200 and 185mAh/g, respectively, evidently higher than other cathode materials, which is attributed to more intercalation space and better thermodynamic intercalation sites for Li+ in the nanotubes.
②VONTs首次充、放电容量分别为200、185mAh/g,明显高于其它正极材料归因于VONTs能为Li+提供更多的嵌入空间及更好的热力学嵌锂位置。
参考来源 - 低维钒氧化物纳米材料制备、结构与性能研究·2,447,543篇论文数据,部分数据来源于NoteExpress
以上来源于: WordNet
N-COUNT A cathode is the negative electrode in a cell such as a battery. Compare . 阴极
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