氟化锂

  • 网络lithium fluoride;lif
氟化锂氟化锂
  1. 掺氧氟化锂晶体中F2~+心稳定性的实验研究

    Experimental study on stability of F_2 + centers in oxygen doped LiF crystals

  2. 目的分析氟化锂(LiF)探测器在测量质子时的厚度效应。

    Objective To theoretically analyze the thickness effect of a LiF detector for proton measurement .

  3. 氟化锂晶体F3~+色心四波混频研究

    Study on four-wave mixing of f_3 ~ + centers in lithium fluoride crystals

  4. 氟化锂晶体中O~(&)对于F2~+心稳定作用的理论研究

    Theoretical study on stabilization of f_2 ~ + centers by o ~ ( & ) in lie crystals

  5. 氟化锂晶体F2心光致电离及F2和F2~+心激光特性研究

    Study on photoionization of F_2 centers and laser performance of F_2 and F_2 ~ + centers in LiF

  6. 氟化锂(LiF)热释光探测器对带电粒子的响应主要依赖于粒子的传能线密度(LET)。

    Response of LiF thermoluminescence ( TL ) detector to charged particle is dependent on particles ' LET .

  7. 本文首先研究了重要原材料&氟化锂(LiF)的制备新方法,分为湿法、固相法两种方法制备。

    The preparation methods are sub-divided into two : the wet method and the solid phase method .

  8. 对目前常用的两种氟化锂(LiF)热释光探测器的剂量学特性进行了实验研究。

    The dosimetric characteristics of two kinds of common-used lithium fluoride ( LiF ) detectors have been studied experimentally by this equipment in the laboratory in CIAE .

  9. 采用平面波赝势密度泛函方法,对单晶氟化锂(LiF)在0~500GPa静水压下的光学性质进行了理论研究,并利用Vinet状态方程和准简谐Debye模型得到了其热力学性质。

    The optical properties of single crystal Lithium Fluoride ( LiF ) are investigated by means of a plane-wave pseudopotential density functional theory method in a range of hydrostatic pressure up to 500 GPa .

  10. 论文的主要研究成果与创新点如下:1.氟化锂(LiF)在电子传输层和空穴传输层中双掺杂的OLED器件。

    The research achievements and innovations of this thesis are as followings : 1 . Enhanced performance of OLED by dual doping of LiF in electron transporting layer ( ETL ) and hole transporting layer ( HTL ) .

  11. 以氟化锂、氯化镁、水玻璃、氨水为主要原料,采用水热体系合成了锂皂石(Hectorite)。

    Hectorite was synthesized in hydrothermal system by using lithium fluoride , magnesium chloride , water glass , and ammonium hydroxide as starting materials .

  12. 氟化锂团簇基纳米相薄膜的慢正电子研究

    Study on Lithium Fluoride Cluster-Based Nanophase Films by LowEnergy Positron Beam

  13. 氟化锂的运输必须符合当地和国家规定。

    Shipping of product in accordance with local and state regulations .

  14. 掺铬氟化锂锶铝激光器小信号增益的研究

    Study of the small signal gain for a Cr : LiSAF laser

  15. 超细硼粉的氟化锂包覆

    Surface Coating of Superfine Boron Particles With Lithium Fluoride

  16. 染料激光器泵浦的氟化锂M心激光器

    A M-center Laser in LiF pumped by Dye Laser

  17. 氟化锂探测器对带电粒子传能线密度的响应

    Response of Lithium Fluoride Detector to Charged Particle LET

  18. 氟化锂热释光探测器剂量特性的实验研究

    Experimental study on dosimetric characteristics of LIF TLD

  19. 脉冲激光在氟化锂晶体中引起的位错结构

    Pulsed Laser Induced Dislocation Structure in LiF Crystals

  20. 掺OH~-氟化锂晶体中OH~-行为的研究

    Investigation on the Behaviour of Hydroxide Ions in OH ~ - Doped Lithium Fluoride Crystals

  21. 高纯氟化锂的制备与分析

    Preparation and Analysis of High-Purity Lithium Fluoride

  22. 氟化锂热释光剂量计但也无法解释这道光。

    Lithium fluoride thermoluminescence dosimeter His son had no explanation for the light , either .

  23. 超短脉冲激光与氟化锂晶体的相互作用研究

    The ablation mechanism and ultra-fast dynamics property of lithium fluoride with the ultra-short pulse laser

  24. 本文介绍了近年来应用氟化锂剂量计在个人剂量检测等方面的情况。

    The experience of LiF dosimeter application for personal dose checkup in recent years was reported .

  25. 放射光致发光剂量计氟化锂热释光剂量计

    Lithium fluoride thermoluminescence dosimeter

  26. 由于更多地使用氟化锂棱镜,这个光谱区域的应用可能会有更大的发展。

    With the greater availability of lithium fluoride prisms , the use of this spectral range will probably be considerably extended .

  27. 从1500例的监测结果表明,氧化铍比氟化锂的监测要成功得多。

    The result of 1500 cases shows that the detector of ceramic BeO gives-more information than that of T type LiF .

  28. 研究了电解质中加入氯化钠,并用氯化钠取代部分氟化锂的电解质体系的密度。

    Studies the density of the aluminum electrolyte system where NaCl was used as an additive to substitute partly for LiF .

  29. 同时对高纯氟化锂的一些常用分析方法,如石墨炉原子吸收法、火焰原子吸收法等进行了评述。

    Lithium fluoride analysis methods used commonly were reviewed , which included graphite furnace atomic absorption spectrometry and flame atomic absorption spectrometry .

  30. 升温速率对氟化锂热释光探测器灵敏度和探测阈的影响

    Influence with the Detection Sensitivity and Detection Threshold of LiF Thermoluminescent Detector ( TLD ) under Different Velocities when the Temperature Rises