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inverse spinel meaning in Chinese

反尖晶石
反式尖晶石

Examples

  1. For inverse spinel type linivo4 , it also attracts many research workers interests due to its high voltage ( 4 . 8v , vs . li ) . layered linio2 can be used as 4v batteries , its theoretic cycle capacity is 275 mah - g - 1
    而反尖晶石型linivo _ 4作为正极材料因为具有很高的电池电压( 4 . 8v , vs . li )也引起了很多研究者的兴趣。
  2. The product has perfect - layered structure and high purity , which is favorable to improve its electrochemical properties . ( 4 ) inverse spinel linivo4 has been successfully synthesized by citrate complex sol - gel method . in the preparation process of linivo4 , the main factors affecting the structure and purity of the product are the ratio of reactants , the formation process of the sol , the de
    ( 9 )反尖晶石型linivo ;作为铿离子电池正极材料,具有高达4 . 8v的电压,每摩尔linivo ;可嵌入6摩尔以上li十离子,初始比容量达1000mah . g一,左右, 50次循环后比容量保持在600mah . g一,左右,是一类特殊的正极材料。
  3. In this paper , the preparing technological parameters , formation mechanism and structures of ( lithium ) vanadium oxides ( nanocrystalline vo2 , amorphous v2o5 , layered li1 + xv3o8 and inverse spinel linivo4 ) are systematically studied and discussed , and some properties of the products are measured as cathode materials for lithium ion batteries . the main results are as follows : ( 1 ) nanocrystalline vo2 has been successfully synthesized by a solution chemical reaction method in normal temperature and pressure . the procedure involves v2o5 reacts with koh to form k3vo3 in water and then k3vo3 is reduced with kbh4 around ph = 4 forming vo2 precipitation in aqueous
    本文从实验与理论分析相结合的角度对(锂)钒氧化物(纳米vo _ 2 、非晶态v _ 2o _ 5 、层状li _ ( 1 + x ) v _ 3o _ 8及反尖晶石型linivo _ 4 )制备过程中工艺参数、结构和形成机理等方面进行了系统深入的研究,对(锂)钒氧化物电性能进行了初步测试,取得的主要结果如下: ( 1 )成功的在常温常压下通过溶液化学反应直接制得具有纳米结构的vo _ 2粉。

Related Words

  1. iron spinel
  2. inverse
  3. inverse vsp
  4. inverse image
  5. inverse network
  6. inverse feed
  7. inverse configuration
  8. generalized inverse
  9. inverse fft
  10. inverse operation
  11. inverse speed motor
  12. inverse spine
  13. inverse spinel structure
  14. inverse square
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