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1)  lithium cobalt oxide
锂钴氧化物
1.
Progress in doped lithium cobalt oxide used as cathode for Li-ion batteries;
正极材料锂钴氧化物掺杂研究进展
2.
The conductivity of cathode materials for molten carbonate fuel cell (MCFC), such as lithium nickel oxide, lithium cobalt oxide and lithium ferrite oxide, was studied by AC impedance measurement.
通过交流阻抗方法研究了熔融碳酸盐燃料电池阴极材料锂镍氧化物、锂钴氧化物和锂铁氧化物的导电性能。
2)  LiCoO 2
锂钴氧化物
1.
The LiCoO 2 was prepared throuth high temperature solid state reaction of mixture of lithium hydroxide and cobalt oxide in air at 950℃ for 12h.
报道了由氢氧化锂与氧化钴通过高温固相法合成锂钴氧化物以及合成条件对产物结构、电化学性能的影响。
3)  Lithium Nickel Cobalt Oxide
锂镍钴氧化物
1.
The results show that lithium nickel cobalt oxide as cathode material with good structure and excellent property can be obtained by controlling the factors strictly.
结果表明 ,通过严格控制各影响因素可以制得结构和性能优良的锂镍钴氧化物正极材料 ,其首次放电比容量大于 1 6 0mA·h/ g ,松装密度大于 2 。
4)  lithium cuprum phthalocyanine
锂钴氧化合物
5)  lithium cobalt nickel manganese oxide
锂钴镍锰氧化物
1.
Electrochemical impedance spectroscopy (EIS) was applied to study the reaction kinetics of layer lithium cobalt nickel manganese oxide material.
用交流阻抗法研究了锂离子电池结构、充电状态以及温度对层状锂钴镍锰氧化物反应动力学的影响。
6)  Li-Ni-Co-O oxides
锂镍钴氧化物
1.
With the precursor mixed with LiOH·H_2O in solid state then sintered in O_2 atmosphere , Li-Ni-Co-O oxides can be obtained as cathode material for lithium-ion battery.
采用共沉淀法合成了镍钴氧化物前驱体,再与LiOH·H2O固相混合,在氧气氛下高温焙烧合成锂离子电池正极材料锂镍钴氧化物LiNi0。
2.
The MA (Mechanical Alloying) technology was employed to synthesize the Li-Ni-Co-O oxides doped with rare earth element of Lanthanum as lithium-ion battery cathode material via solid-phase sintering in O2 atmosphere.
采用机械合金(MechanicalAlloying-MA)技术,固相掺杂稀土元素镧,在氧气气氛中高温焙烧合成锂离子电池正极材料锂镍钴氧化物,对所得化合物进行了稀土掺杂量及电化学性能的研究;同时也进行了相关的XRD、SEM、CV表征。
补充资料:钴钼氢氧化物氧化物磷酸盐
CAS:68130-37-0
中文名称:钴钼氢氧化物氧化物磷酸盐
英文名称:Cobalt molybdenum hydroxide oxide phosphate; Molybdenum cobalt acid phosphate complex; Molybdenumcobaltacid phosphate complex
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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