硒化物

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  • selenide
硒化物硒化物
  1. 通过对不同厚度样品的红外透射比测量,经反演迭代计算得到了一种中红外硒化物玻璃(Ge(30)As(10)Se(60))的光学常数,并进行了误差模拟分析。

    Optical constants of a MWIR selenide glass were obtained through successive iterations of transmittance spectrum of samples with different thickness Its simulated error was analyzed . the maximum simulated error of the water depth is around 10 percent of observed ;

  2. 三元多硒化物的微波溶剂热合成及其结构

    Preparation of ternary selenide by microwave solvothermal technique and its structure

  3. 不饱和脂酸及其硒化物对BEL-7402人肝癌细胞的杀伤作用及DNA合成的影响

    Cytotoxic Action and Effect of Unsaturated Fatty Acids and Their Selenides on DNA Synthesis in BEL 7402 Human Hepatocarcinoma Cells

  4. 许多硫化物,硒化物和碲化物具有砷化镍NiAs型的结构。

    Many sulphides , selenides , and tellurides have the nickel arsenide 's NiAs type of structure .

  5. Ⅱ-Ⅵ族硒化物薄膜的研究进展

    Progress in Studies on ⅱ - ⅵ Selenium Compound Thin Films

  6. 多烯脂肪酸及其硒化物的体外抗癌活性研究

    Studies on the in vitro antitumor activity of PUFAs and corresponding se-pufas

  7. 一种红外硒化物玻璃的光学常数及其增透膜

    Optical Constants of a Selenide Glass and Its AR Coatings

  8. 某些金属离子络合物和有机硒化物的合成及其辐射防护作用

    Synthesis and radioprotective effect of some metal ion complexes and organic selenium compounds

  9. 氧化物与硒化物微纳米材料的液相控制合成与性能研究

    Solution-based Controllable Synthesis and Properties Research of Oxides and Selenides Micro / Nanomaterials

  10. 绿色化学途径合成硒化物半导体量子点

    Green Chemical Routes to Selenium Compound Semiconductor Quantum Dots

  11. 穿心莲内酯硒化物的研究

    A Study on Andrographolide Selenide

  12. Ⅳ-Ⅵ族金属硫硒化物是重要的窄带隙半导体材料,传统的粗晶粒材料已经被广泛的研究和应用。

    IV-VI metal chalcogenide ( S or Se ) compounds are important narrow-gap semiconductor materials and have been widely used in diverse areas .

  13. 作为一类重要的无机功能材料,铁的硫化物和硒化物具有独特的光学、电学、磁学和传输性能。

    As an important class of inorganic functional materials , Iron selenides and sulfides have unique optical , electronic , magnetic and transport properties .

  14. 镍和钴的硒化物纳米材料在催化剂、传感材料、磁性材料以及电池等方面有着极其广泛的应用。

    Nickel and cobalt selenides are widely applied in the fields of catalyst , sensor materials , magnetic materials , cell and so on .

  15. 本论文的主要目的是采用固相合成反应合成新型的[AxMyM'y'Qz]型多元金属硒化物。

    The major contribution in this paper is the synthesis of novel [ AxMyM'y'Qz ] multi-component metal selenides by the method of solid state synthesis .

  16. 采用电阻蒸发和电子束蒸发方法,制备了9种红外薄膜材料的单层膜,包括氟化物、硫化物和硒化物。

    Some single-layer films of 9 infrared thin film materials , which include fluoride , sulfide and selenide , have been made by resistive heating evaporation or electron beam bombardment technique .

  17. 金属硒化物具有独特的光学、电学特性,在薄膜太阳电池、热电器件等领域具有良好的应用前景。

    Metal selenides have been widely applied in thin film solar cells and thermoelectric devices owing to their unique optical and electrical properties , which has attracted great attentions from academic to industrial community .

  18. 但是,金属硒化物纳米晶体并不像金属硫化物那样轻易制得,这主要是因为硒源远比硫源难于获得,并且高温高压等反应条件不易控制等原因造成的。

    However , the metal selenium compounds nanocrystalline is not as easily obtained as metal sulfide for the source of selenium is difficult to prepare than sulfur . Another causes is that the preparation of selenium compounds need high-pressure and high-temperature conditions .

  19. 硒化物量子点作为一类重要的半导体量子点,广泛用在太阳能电池、发光二极管、生物标记、各种发光装置、激光与红外探测器件、红外窗口与非线性光学材料等。

    Selenides QDs are a very important group of semiconductor QDs , which are widely used in solar cells , light-emitting diodes , biological labels , luminescence devices , laser or infrared detectors , infrared window materials , nonlinear optical materials and so on .

  20. 硒及硒化物可防治多种与硒缺乏相关的疾病。

    Selenium and seleno-compounds could prevent or remedy diseases in which selenium is deficient .

  21. 本文综述近年来有关硒及硒化物的药理和药效学研究进展。

    The recent researches on the pharmacological action and pharmacodynamics of selenium and sel eno-compounds were reviewed .

  22. 硒酵母制备中添加不同硒化物对酵母中硒含量的影响

    Effect of Different Selenium Compounds on the Content of Selenium in Yeast

  23. 因此,硒的形态分析对于了解不同形态的硒化物在生物体和环境中的迁移转化规律具有重要意义。

    Speciation analysis of selenium is very important , that may help us to have a better understand on the transformation and distribution of different selenium compounds in our life and environment .