晶型

  • 网络crystalline;crystalline form;Crystal type;crystal forms
晶型晶型
  1. 同步加速X射线衍射器灵敏度高,可对多晶型进行同时检测和定量。

    The high sensitivity of SXRD allowed simultaneous detection and quantification of multiple crystalline phases .

  2. TEM和XRD测试结果表明,CdS纳米线为六方晶型结构。

    TEM and XRD investigations demonstrate that these nanowires have a crystalline structure of hexagonal CdS crystal .

  3. Ni(OH)2晶型构造控制研究

    Study on Control of Crystal Structure of Ni ( OH ) _2

  4. 同时Al2O3晶型的转变也是其失活的重要原因。

    The conversion of crystal of Al_2O_3 is another reason for deactivation .

  5. 不同晶型Bi2O3可见光光催化降解罗丹明B的研究

    Visible-Light Photocatalytic Degradation of RhB by Bi_2O_3 Polymorphs

  6. LMPM/PP复合材料中PP的晶型结构

    Crystal Structure of Polypropylene in LMPM / PP Composite

  7. X射线衍射(XRD)图谱表明PVA的晶型发生转变。

    The X-ray diffraction showed that the crystal structure of PVA has changed .

  8. 覆钴层晶型对球形Ni(OH)2电化学性能的影响

    Effects of crystal structures of cobalt compounds on electrochemical properties of spherical Ni ( OH ) _2

  9. Fe2O3晶型对铁-铬系中温变换催化剂活性的影响

    Effect of Fe_2O_3 Crystalline Phase on Activity of Fe-Cr system Medium Temperature Water-Gas Shift Catalysts

  10. X射线衍射分析结果表明:TiO2被等离子体修饰后仍然保持锐钛矿晶型。

    The X-ray diffraction ( XRD ) revealed the crystal type of TiO2 was still anatase .

  11. 在溶液中用还原法制备了纳米镍(Ni)粉,用TEM、XRD等对其晶型、粒度进行了较全面的表征。

    Nano-nickel powder was prepared by means of chemical reduction and characterized by using TEM , XRD .

  12. TiO2晶型及其相变的高温拉曼光谱研究

    High Temperature Raman Spectroscopic Study of Titania and Its Phase Transformation

  13. 另外,充电制式的不同,也会影响正极中Ni(OH)2晶型的变化。

    In additions , the variation of charging regime can also influence the crystal changes of Ni ( OH ) 2 .

  14. 采用红外光谱、差示扫描量热法和粉末X射线衍射技术等研究酒石酸唑吡坦原料药的多晶型问题。

    Its structure was characterized by X-ray powder diffraction , elemental analysis , high performance liquid chromatography , and differential scan calorimetry .

  15. 制备条件对纳米TiO2晶型及其晶相含量影响的研究

    Influence of Preparation Conditions on Nano TiO_2 Crystal Phase Structure

  16. 高能球磨锐钛矿型TiO2晶型转变的研究

    Polymorphic transformation of anatase TiO_2 caused by high-energy ball milling

  17. 纳米TiO2的晶型、粒径与光催化活性

    Crystal Form , Particle Size and Photocatalytic Activity of Nano-TiO_2

  18. TiO2膜的晶型与亲水性的关系

    The Relationship Between Crystals and hydrophilic Property of TiO_2 Membrane

  19. 纳米TiO2粉体晶型转化问题的研究

    Study on the transition of crystal form of nano-tio_2 powder

  20. 自由基抑制剂对不同晶型TiO2光催化反应的影响

    Effects of hydroxyl free radical inhibitors on TiO_2 photocatalysis with different crystalline

  21. 纳米ZrO2-微米Al2O3复合陶瓷中内晶型结构的形成与机理

    Formation and mechanism of intragranular structure in zirconia - toughened alumina ceramics with nano-zro_2 and micro-al_2o_3

  22. ZnO异质复合对纳米TiO2晶型转变和晶粒生长的影响

    Effects of heterogeneous composite agent ZnO on phase transition process and particle growth of tio_2 nanocrystal

  23. 同时热形变诱发析出了NaCl晶型的MC型碳化物;

    Thermal deformation induces the precipitation of MC - type carbides of NaCl crystal - type ;

  24. 立方晶型FeS2(Pyrite)薄膜的制备及性能的研究

    Studies on Preparation and Properties of FeS_2 ( Pyrite ) Thin Film

  25. 利用x射线衍射仪、能谱分析和电子扫描电镜对瓷砖釉面表面的二氧化钛晶型、形貌、颗粒大小进行了测试。

    Using X-ray diffraction , energy spectrum analysis and scanning electron microscope , TiO2 crystallite , shape and size on ceramic surface are tested .

  26. X衍射图谱表明,复合变性处理后淀粉颗粒晶型未发生变化,仍属于B型结晶结构。

    X-ray diffraction revealed that after compound modifieds , starch particles crystal shape was not changed , still belong to type B crystal structure .

  27. XRD分析表明:碱活化条件将直接影响沸石的晶型、晶粒尺寸和相对含量。

    XRD analysis shows that the type , granularity and relative content of synthetic zeolite were affected by these factors .

  28. 纳米TiO2晶型配比对涂布纸性能的影响

    Effect of the Ratio of Nano TiO_2 Crystals on the Properties of Coated Paper

  29. 混晶型TiO2/凹凸棒土纳米复合材料的光催化性能

    Photocatalytic properties of mixed-phase TiO_2 / attapulgite nanocomposites

  30. 用X射线衍射定量物相分析法.测定了不同产地EMD(电解二氧化锰)中不同晶型二氧化锰的含量。

    Quantitative analysis of phase composition of EMD ( electrolytic manganese dioxide ) by X-ray diffraction method is introduced .