快离子导体

  • 网络fast ion conductor;fast ionic conductor
快离子导体快离子导体
  1. 快离子导体系统中Li~+运动的~7LiNMR研究

    ~ 7Li NMR Study Li ~ + Motion in Fast Ionic Conductor System

  2. lif-licl-b2o3系统非晶态快离子导体结构的研究。

    A study on structure of amorphous fast ionic conductor in system lif-licl-b_2o_3 .

  3. LiH-LiF-P2O5系非晶态快离子导体的电性能与核磁共振研究

    Study on Electrical Property and NMR of LiH-LiF-P_2O_5 System Non-crystalline Fast Ionic Conductor

  4. 连续CO2激光制备ZrO2快离子导体研究

    Sintering of ZrO_2 superionic conductor using CW CO_2 laser beam

  5. 40Li2O-12P2O5-48V2O5非晶快离子导体的晶化过程研究

    An Investigation on the Crystallization Process of Amorphous Fast Ionic Conductor 40Li_2O-12P_2O_5-48V_2O_5 by the Positron Annihilation Technique

  6. 非晶快离子导体AgI-Ag4P2O7中银沉积的电子探针研究

    EPMA Study on Silver Deposition in Amorphous Fast Ionic Conductor AgI-Ag_4p_2O_7

  7. 微波固相法合成钠快离子导体Na5YSi4O(12)

    Microwave Radiation Synthesis of Fast Ionic Conductor Na_5YSi_4O_ ( 12 )

  8. 快离子导体作填料的PEO基聚合物电解质

    PEO Based Polymer Electrolyte with the Super Ionic Conductor as Filler

  9. 用激光熔融法制备稳定ZrO2快离子导体

    Preparation of Stabilized ZrO_2 Superionic Conductor by Laser Melting

  10. 采用以无机盐为基础的新型溶胶凝胶法合成了NASICON快离子导体材料。

    Solid electrolyte NASICON ( sodium super ionic conductor ) was synthesized by new sol gel method in which inorganic salts were used as raw material .

  11. 用电子探针显微分析法,研究了AgI-Ag4P2O7非晶态快离子导体中的银沉积问题。

    The silver deposition in amorphous fast ionic conductor AgI-Ag_4P_2O_7 has been investigated by EPMA and the counting rate curves were given .

  12. 用硅溶胶和聚乙烯醇缩聚反应生成的溶胶、凝胶制备了固体电解质钠快离子导体(natriumsuperionicconductor,Nasicon)。

    Solid electrolyte natrium super ionic conductor ( Nasicon ) was prepared by the polycondensation of silica sol and polyvinyl alcohol via a sol-gel route .

  13. 快离子导体在低频(f<10~9Hz)下具有非Debye型的介电行为。

    Superionic conductors exhibit non-Debye behavior of solid dielectrics at low frequencies ( f < 109Hz ) .

  14. 以高岭石和NaTi2(PO4)3为基的钠快离子导体

    Sodium Fast Ion Conductors Based on Kaolinite and NaTi_2 ( PO_4 ) _3

  15. 测试了LiH-LiF-P2O5系非晶态快离子导体材料的交流电导率;分析了样品的交流阻抗谱并确定了对应的等效电路。

    The AC conductivity of LiH-LiF-P_2O_5 system non-crystalline fast ionic conductors were measured , The AC complex impedance diagrams of the specimens were investigated and the equivalent circuits were determined also .

  16. 钠快离子导体Na(3-x)Zr(2-x)VxSi2PO(12)系统的固相合成与表征

    Solid Phase Synthesis and Characterization of Sodium Fast Ion Conductors of Na_ ( 3-x ) Zr_ ( 2-x ) V_xSi_2PO_ ( 12 ) System

  17. 用该系统研究了铜快离子导体CuI-Cu2O-MoO3-P2O5在AES的探针电子诱导下铜沉积的规律;

    Using this system the copper deposition law with a probe electron of AES attracting in the copper fast ionic conductors CuI-Cu_2O-MoO_3-P_2O_5 was studied .

  18. Na3Hf(2-x)TixSi2PO(12)系统快离子导体的研究

    Study on Fast Ion Conductors in the Na_3 Hf _ ( 2-x ) Ti_x Si_2PO_ ( 12 ) System

  19. 为了获得更高的离子电导率,用快离子导体和PEO(聚环氧乙烷)复合制备聚合物电解质。

    In order to achieve higher ionic conductivity , the composite polymer electrolyte ( CPE ) with the super ionic conductor and PEO was prepared .

  20. 研究了压力(高达10.9kbar)对非晶态快离子导体(AgI)(0.788)(Ag2O·B2O3)(0.212)的室温电导率及晶化温度Tc的影响。

    The effects of pressure ( up to 10.9 kbar ) on the conductivity and crystallization temperature ( T_c ) of amorphous fast-ion conductor ( AgI ) _ ( 0.788 )( Ag_2O · B_2O_3 ) _ ( 0.212 ) has been investigated .

  21. 本文考虑到快离子导体的特点,依据Ngai的红外发散理论,从快离子导体的传输特点出发,解释了这种非Debye型介电行为的起因。

    Based on the characteristic of superionic conductors and a physical picture of Ngai 's infrared divergent theory , we consider the fast ion transport as a non-Markovian process and analyze the alternating current properties of superionic conductors .

  22. 快离子导体有晶态、非晶态,也有聚合物。

    Super ionic conductors may be crystals , glasses and polymers .

  23. 锌蒙脱石快离子导体及其固态电池

    The Fast Ionic Conductor Zinc Montmorillonite and Its Solid State Battery

  24. 聚合物快离子导体合成及电性能研究

    Study of Synthesis and Electrical Properties of Polymer Solid State Ionics

  25. 微波诱导固相合成在锂矿物快离子导体合成中的应用

    Microwave Solid Synthesis Applied in Lithium Mineral Fast Ion Conductor

  26. 模型接枝聚醚网络快离子导体的制备及导电性研究

    Synthesis and Ionic Conductivity of Model Graft Polyether Network Electrolyte

  27. 快离子导体的组成决定了它的性能,为提高离子电导率可在硅酸锂体系快离子导体中加入稀土元素等第三组分。

    Performance of fast ion conductor depends on its component .

  28. 高银离子浓度非晶质快离子导体的合成

    Preparation of Superionic Conducting Amorphous Materials with High Concentration of Silver Ions

  29. 多晶快离子导体的晶界性质对其电导的影响

    Effect of grain boundary properties on conductivity for polycrystalline fast ionic conductors

  30. 用离子交换法制备了铝蒙脱石快离子导体。

    Al-montmorillonite solid electrolyte was made by ion exchange method .