• lithium
锂
[lǐ]
  • 一种金属元素,是金属中比重最轻的。可应用在原子能工业上,亦可制造特种合金、特种玻璃等。

  1. SAW级钽酸锂晶体生长

    Growth of the LiTaO_3 Single Crystals for SAW Devices

  2. 1420铝锂合金DC铸造的常见缺陷

    Common Defects in 1420 Al Li Alloy by Direct chill Casting

  3. 锂离子电池阴极材料LixNiO2合成

    Preparation of Li_xNiO_2 as Cathode in Secondary Lithium Ion Battery

  4. 高分辨率硅(锂)X射线探测器

    Hight Resolution Si ( Li ) X Ray Detector

  5. 2090铝锂合金中T1相与β'(Al3Zr)相间的交互作用

    Interaction between t_1 phase and β'( al_3zr ) phase in 2090 aluminium-lithium alloys

  6. LixNiO2&锂电池阴极材料

    Li_xNiO_2 & A Cathode Material for Lithium Batteries

  7. 用MonteCarlo方法计算锂玻璃的中子探测效率

    Calculation of neutron detection efficiency for the thick Lithium glass using Monte Carlo method

  8. 本文对生长四硼酸锂(LiB4O7)单晶所需条件进行了初步探讨。

    A preliminary discussion on the growth condition of Li_2B_4O_7single crystals have been made .

  9. 锂原子在Li(100)平坦表面和台阶面吸附扩散的行为

    Theoretical Study on Adsorption and Diffusion Behavior of Lithium Atom on Li ( 100 ) Smooth Surface and Step Surface

  10. 利用XRD测定了其结构;采用库仑滴定方法对其锂离子的嵌入行为进行研究。

    The structure and the lithium intercalation properties were investigated by means of XRD and coulombic titration .

  11. 稀土Ce对2090铝锂合金晶界内耗的影响

    Effects of Rare Earth Element Cerium on Grain Boundary Internal Friction of 2090 Aluminium Lithium Alloy

  12. 锂离子蓄电池Co3O4负极材料

    Study on the Co_3O_4 negative materials for lithium-ion batteries

  13. 锂离子电池纳米Co3O4-PTFE复合负极材料的循环性能

    Cycling Capacitance of Co_3O_4-PTFE Composite Negative-electrode for Lithium-ion Batteries

  14. 可充锂电池用非晶态MnO2/C纳米复合材料的直接合成及其电化学性能研究

    Direct synthesis and electrochemical performance of manganese oxide / C nanocomposites for rechargeable Li batteries

  15. 锂离子电池负极薄膜的静电喷雾沉积(ESD)制备与表征

    Electrostatic spray deposition ( ESD ) derived graphite films for lithium ion batteries

  16. 电沉积-烧结制备Co3O4锂离子电池负极及电性能

    Co_3O_4 Negative Electrode for Lithium-Ion Batteries Prepared by Electrochemical Deposition-Sintering Processes and Its Capacitance Performance

  17. 硅(锂)阵列探测器原设计用于同步辐射冠状动脉血管造影实验的电流测量模式下的X射线光强的测量。

    The Si ( Li ) detector array has been designed for the X - ray intensity measurement in current mode of SR angiography experiments .

  18. 尖晶石LiMn2O4的低温合成及锂离子嵌脱动力学

    Low temperature preparation and kinetics of Li-ion insertion-extraction of spinel LiMn_2O_4

  19. 纳米SiO2改性聚合物锂离子电池的研究

    Study on Plastic Li-ion Battery Modified by Nano-SiO_2

  20. 碳酸锂,GCSF、糖皮质激素对ATD引起的粒细胞缺乏症治疗效果明显。

    Lithium carbonate , G CSF and glucocorticoids were very effective in agranulocytosis induced by ATD .

  21. 研究了富锂尖晶石Li4Mn5O(12)的电化学性能;

    Electrochemical property of rich lithium spinel Li_4Mn_5O_ ( 12 ) was studied .

  22. 用差示FT-Raman和~(11)BNMR光谱学研究四硼酸锂水溶液的结构

    Structural Study of Supersaturated Aqueous Lithium Tetraborate Solutions by Difference FT-Raman and ~ ( 11 ) B NMR Spectroscopy

  23. 研究了28℃下,氘化锂粉末与O2,CO2和水汽的反应动力学。

    The kinetics of reaction of lithium deuteride powder with O_2 , CO_2 and water vapor is ( studied . )

  24. 研究了碳酸锂碳化反应动力学,利用气-液-固三相机械搅拌反应器,通过监测反应过程中CO2气体的压力变化与消耗情况,计算出反应速率,简化了分析步骤。

    The kinetics of the carbonization reaction of lithium carbonate was studied . A gas-liquid-solid three-phase mechanical agitated reactor was used as the reactor .

  25. 高质量非线性光学晶体三硼酸锂(LBO)的熔盐生长

    Growth of High Quality Nonlinear Optical Crystal LBO by Flux Method

  26. 锂离子电池中固体电解质界面膜(SEI)研究进展

    Progress in Solid Electrolyte Interface in Lithium Ion Batteries

  27. 用交流阻抗法对PAN基碳纤维、石油焦、沥青焦、针状焦进行了嵌锂过程的研究。

    Electrochemical intercalation of lithium into PAN based carbon fibers , petroleum coke , pitch coke and needle coke were studied by AC impedance method .

  28. 锂离子蓄电池正极材料LiMn2O4高温容量衰减解析

    Analysis of the capacity fading of LiMn_2O_4 as cathode material for Li-ion batteries at high temperature

  29. 恒电流充放电测试结果显示,在相同的嵌锂电位下锂与微晶石墨和鳞片石墨所形成的层间化合物(LiGICs)不完全相同;

    The Li-GICs of microcrystalline graphite is different from that of flake graphite at the same intercalation potential .

  30. 研究了H2Pz(dtn)(mt)6对正极材料MnO2在锂离子电池中的修饰作用。

    The modification on the cathode materials MnO 2 in lithium ion battery was studied .