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ktn

  • 网络钽铌酸钾;凯奇坎
ktnktn
  1. Study on Phase Structures and Phase Transition of KTN Crystals

    钽铌酸钾晶体相结构和相变的研究

  2. A Study of the Reaction Mechanisms of KTN Gel in Heat Treatment Process

    KTN凝胶热处理过程中的反应机理研究

  3. Study on Growth and Photorefractive Effects of Cu : KTN Crystal

    Cu:KTN晶体的生长和光折变研究

  4. Preparation of KTN Thin Films and Mechanism Research of PLD

    KTN薄膜制备与PLD机理研究

  5. A Study of Atmosphere Sintering Technique for KTN Ceramics by Sol Gel Method

    用Sol-Gel法制备粉料及KTN陶瓷烧结研究

  6. Research of the Preparation of Highly Oriented KTN Films by PLD

    高取向KTN薄膜的PLD法制备研究

  7. The Flux Growth of KTN Crystals and their Phase Structures

    KTN晶体的溶盐法生长及其相结构的研究

  8. Research of the Structure and Surface Morphology of KTN Thin Films Prepared by Sol-Gel Method ;

    Sol-Gel法制备KTN薄膜的结构和形貌研究(英文)

  9. High temperature Raman spectra and micro-structure of KTN crystal and melt

    KTN晶体及其熔体结构的高温拉曼光谱研究

  10. Dielectric Degradation and Coloration of KTN Crystal under High DC Voltage

    KTN晶体在高压直流电场下的介电退化与着色现象

  11. Solvothermal Synthesis Processing and Mechanism Investigation of Ferroelectric KTN Ceramic Powders

    铁电KTa(0.65)Nb(0.35)O3陶瓷粉体的溶剂热法制备及机理研究

  12. Technical study on the preparation of KTN sol , gel using metal alkoxides

    用金属醇盐制备KTN溶胶凝胶的工艺研究

  13. Control of thickness and homogeneity of KTN thin film prepared by sol gel process

    sol-gel法制备KTN薄膜厚度及均匀性控制

  14. Study on the mechanism of the Depositon process of KTN thin film by pulsed laser

    KTN薄膜脉冲激光沉积过程的机理研究

  15. Growth of photorefractive crystal KTN by flux pulling method

    熔盐提拉法生长光折变晶体K(Ta,Nb)O3

  16. Effects of Substrates and Bottom Electrodes on the Structure and Orientation of KTN Thin Films

    基片和底电极对KTN薄膜结构与取向的影响

  17. Growth and Photorefractive Properties of Cu Doped KTN Crystal

    立方相掺铜KTN晶体的生长和光折变性能

  18. Combined PLD technology with other technics , high-quality KTN thin films are prepared .

    我们巧妙地将PLD技术与其它工艺结合起来,制备出高质量的KTN薄膜材料。

  19. Thermal Properties of KTN Single Crystals

    KTN单晶的热学性质

  20. First-Principles Study of the Ordered and A-Site Partial Substituted KTN Solid Solutions

    有序取向与A位部分替代KTN固溶体的第一性原理研究

  21. Ferroelectric and Photorefractive Properties of KTN : Cu Crystal

    KTN∶Cu晶体的铁电和光折变性能

  22. Therefore , the series of KTN crystals have been the subject of extensive investigation in the scopes of functional materials .

    因此,KTN系列晶体成为当前功能材料领域研究热点。

  23. The structure of KTN thin films on vary substrates and bottom electrodes firmed by Sol Gel method were studied .

    研究了用溶胶-凝胶(Sol-Gel)法在不同基片和底电极上制备KTN薄膜的结构,发现基片和底电极的结构及化学稳定性直接影响到KTN薄膜的生成和结构。

  24. The experiments show that different tests frequency and doping content of the KTN ceramic have great impact on dielectric constant , dielectric loss and conductivity .

    实验表明,不同的测试频率及掺杂量对KTN陶瓷的介电常数,介电损耗,电导率有较大影响。

  25. Highly oriented KTN thin films were produced on the transparent single crystal quartz ( 100 ) by the pulsed laser deposition ( PLD ) .

    用PLD技术结合后期退火,在透明石英单晶(100)上制备了高取向的纯钙钛矿相KTN薄膜。

  26. Therefore , in order to overcome above difficulties and prepare high-quality KTN thin films , it is very significant to optimize technics parameters and find out an appropriate preparation method .

    因此优化工艺条件,寻找适当的制备技术,寻求克服上述缺点的途径,以制备高质量的KTN薄膜,是非常有价值的工作。

  27. The release of organics ( KTN , BOD_5 , COD_ ( cr )) from polluted bottom sediments of Suzhou River was studied .

    本文对上海苏州河污染底泥中KTN、BOD6、COD(?r)的释放进行了研究。

  28. Their optical spectra are significantly different from those of KTN crystals , which shows that the substituted A atoms have evident effect on the physical properties of KTN solid solutions .

    它们的光学性质与KTN晶体光谱有显著差异。这说明A原子替代效应对KTN固溶体物理性质产生明显影响。

  29. Based on the integrated theoretical model for pulsed laser deposition of KTa 0.65 Nb 0.35O 3 ( KTN ) thin film , the plasma generated by pulsed laser is studied .

    在建立脉冲激光沉积综合统一理论模型的基础上,进一步研究了制备KTa0.65Nb0.35O3(KTN)薄膜过程中等离子体的空间演化规律。

  30. We explore doping modification technology to solve the problems in the practical application of KTN materials caused by high conductivity and high leakage current . This method will supply a new approach for the practical application of KTN material .

    本课题纳米粉体掺杂改性,旨在解决电导率和漏电流较高的问题,将为KTN材料的实用化提供一条新的途径。