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1)  lithium manganese vanadium oxides
锂锰钒氧化物
2)  lithium vanadium oxide
锂钒氧化物
1.
Recent development of lithium vanadium oxides as cathode materials for rechargeable lithium-ion batteries;
锂离子蓄电池正极材料锂钒氧化物研究进展
2.
Via the solid-phase synthesizing method,a series of fluorine ion doped lithium vanadium oxides with the fluorine contents of 0.
56%的系列修饰锂钒氧化物。
3.
Layered-type compound of lithium vanadium oxide LiV3O8 was synthesized at about 450℃ by the sol-gel method with LiNO3 and NH3 VO3 as raw materials.
以LiNO3和NH4VO3为原料,通过溶胶-凝胶法制备了层状锂钒氧化物LiV3O8锂离子电池正极材料,通过TG-DTG、XRD等考察了合成条件对产物首次放电比容量的影响。
3)  lithium manganese oxides
锂锰氧化物
1.
The recent progress in lithium manganese oxides spinel as cathode materials of lithium-ion batteries is reviewed.
锂锰氧化物资源丰富、成本低廉、工艺简单 ,最有希望替代锂钴氧化物正极材料 ,论文综述了尖晶石型锂锰氧化物的制备方法、性能改善等方面的研究进展 。
2.
Several lithium manganese oxides,including λ MnO 2,LiMnO 2,Li 2Mn 2O 4,Li 2MnO 2,Li xMnO 2,Li 1+x Mn 2-x O 4,Li 2O yMnO 2(y≥2.
这些锂锰氧化物包括λ-MnO2,LiMnO2,Li2Mn2O4,Li2MnO2,LixMn2O4,Li1+xMn2-xO4,Li2OyMnO2(y≥2。
3.
The spinel LiMn_2O_4 and cobalt-doped or chrome-doped lithium manganese oxides of the cathode for rechargeable lithium-ion batteries was synthesized by wet chemical process which is considered as a most promising method for the synthesis of spinel lithium manganese oxides.
湿化学法是一种较有发展前景的合成尖晶石锂锰氧化物的方法。
4)  lithium manganese oxide
锂锰氧化物
1.
Structure and electrochemical performance of Li-rich spinel lithium manganese oxide with doping cobalt;
富锂型掺钴尖晶石锂锰氧化物的结构与电化学性能
2.
Research progress on lithium manganese oxides as cathode materials for Li-ion battery;
锂离子蓄电池正极材料锂锰氧化物的研究进展
3.
Development of wet-chemical synthesis of lithium manganese oxide;
锂锰氧化物的湿化学合成研究进展
5)  Lithium-Manganese oxide
锂锰氧化物
1.
Various preparation methods of lithium-manganese oxide and lithium-titanium oxide which act as precursors of lithium ion-sieves were introduced,respectively.
详细介绍了作为锂离子筛前驱体的锂锰氧化物和锂钛氧化物的制备方法,包括固相烧结法和液相反应法等。
6)  fluorine doped Li-V-O system
掺氟锂钒氧化物
补充资料:氧化钒锰
CAS:14986-95-9
分子式:Mn2V2O7
中文名称:氧化钒锰
英文名称:Manganese vanadium oxide;Manganese pyrovanadate;manganese vanadium oxide
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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