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sno2

  • 网络二氧化锡
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  1. SnO2 in the aluminium electrolytes was discussed by AES in this paper .

    本文探讨了发射光谱法测定铝电解质中二氧化锡。

  2. Powder microelectrode techniques were taken to study the electrochemical property of Sb-doped SnO2 nanopowders .

    采用粉末微电极技术,对掺锑二氧化锡纳米粉末的电化学性质进行了研究。

  3. Studies on electric and optical properties of sno2 : sb film

    SnO2:Sb薄膜的光学和电学性能的研究

  4. The coated NG / SnO2 materials show good electrical properties .

    经过包覆的NG/SnO2表现出了良好的电性能。

  5. The SnO2 : F + Sb thin films have better comprehensive performance .

    同时掺入F和Sb则具有较好的光电综合性能。

  6. Tin oxide ( SnO2 ) is widely applied as the gas sensing material .

    其中使用最多的气敏材料是二氧化锡(SnO2)。

  7. Preparation of Ag / SnO2 electrical contacts material and impact of sintering conditions on density

    Ag/SnO2电接触材料的制备及烧结条件对密度的影响

  8. This work attempts to exploit the growth process of SnO2 films and provide reference for future industrial application .

    本研究试图通过对氧化锡薄膜热蒸发制备工艺的探索为工业应用提供参考。

  9. The results show that Ag / SnO2 system is quite active for the catalytic combustion of methane .

    结果表明,Ag/SnO2体系具有较高的甲烷催化燃烧活性,样品的载银量不同,银物种的存在状态及样品的比表面和催化性能也很不相同。

  10. Nanocomposites of Al2O3 / SnO2 were synthesized by sol-gel method .

    利用Sol-gel法制备了Al2O3/SnO2纳米粉体,颗粒大小为20nm。

  11. The SnO2 / CeO2 thin film was prepared by powder sputter method .

    利用粉末溅射,研究了SnO2/CeO2微型平面薄膜。

  12. The Kinetic Equation of Catalytic Oxidation for CO Catalyzed by Pd / SnO2

    Pd/SnO2催化剂催化氧化CO的动力学方程

  13. SnO2 / Fe2O3heterojunction nanotubes have good absorption property of visible light .

    SnO2/Fe2O3异质结纳米管具有良好的可见光吸收特性。

  14. A multilayers thin film gas sensor of crox / sno2 made by sol-gel method

    溶胶-凝胶法制备CrOx/SnO2多层薄膜气体传感器

  15. The morphology of SnO2 : Sb thin films was researched by AFM .

    采用AFM分析了SnO2:Sb的表面形貌。

  16. UV-Visible Absorption Studies of TiO2 / SnO2 Ultrafine Particles and Composite LB Film

    TiO2/SnO2超微粒及其复合LB膜的紫外-可见光吸收光谱的研究

  17. Magnetic properties of Fe / SnO2 amorphous multilayers prepared by rf sputtering are investigated .

    研究了高频溅射制备的Fe/SnO2非晶的磁特性。

  18. We produced ZnO @ SnO2 core-shell nanorod arrays by using a very simple and low cost method .

    我们用一个简单的、低成本的方法合成了ZnO@SnO2核壳型纳米棒阵列。

  19. As Sb concentration increased , the optical band gap of SnO2 : Sb films were enlarged .

    随着Sb掺杂浓度的增加,SnO2:Sb薄膜的光学带隙变大。

  20. The results show that SnO2 / MWCNTs sensors exhibited good sensitivity in response to decomposition components at room temperature .

    实验结果表明,室温条件下,SnO2/MWCNTs传感器对SF6局部放电分解气体的气敏响应良好。

  21. The Preparation Methods of Pt / SnO2 Catalyst Dope by REOX

    添加稀土氧化物的Pt/SnO2催化剂的制备方法

  22. In addition , the formation mechanism and photocatalytic mechanism of SnO2 / TiO2 nanocomposite were discussed . 3 .

    讨论了SnO2/TiO2纳米复合物的形成机理及光催化反应机理。

  23. From above , the SnO2 / TiO2 composite film had been prepared by LPD .

    在此基础上,于载玻片上制备了SnO2/TiO2复合薄膜。

  24. The hardness of SnO2 : Sb film made up by industrialization online CVD is tested by in situ nano test system .

    用原位纳米测试系统测试了工业化在线CVD法制备的SnO2:Sb(ATO)薄膜的硬度。

  25. At present transparent conductive oxide thin films include chiefly SnO2 、 In2O3 、 ZnO and their dopant system .

    目前,透明导电氧化物薄膜主要包括SnO2、In2O3、ZnO及上述氧化物的掺杂体系。

  26. The mechanical admixture method and sol-gel method were employed to prepare TiO2-doped Ag / SnO2 contact malarial .

    采用机械混合法、溶胶-凝胶法制备TiO2掺杂Ag/SnO2电接触材料。

  27. In addition , SnO2 : Sn / Si-NPA nanocomposites were prepared and their humidity sensing performance were studied .

    此外,还制备了SnO2:Sn/Si-NPA纳米复合体系并研究了其湿度传感性能。

  28. TiO2 / SnO2 composite film prepared by the sol-gel method was deposited on a slide glass substrate by dip-coating method at low temperature .

    采用溶胶-凝胶法常温合成含有一定晶型的TiO2溶胶和SnO2溶胶,使用浸渍提拉法在普通载玻片上制备出TiO2/SnO2复合膜。

  29. While the Cu2O ( 90 % ) / SnO2 show as high photocatalytic activity as Cu2O . 5 .

    而Cu2O(90%)/SnO2的催化活性与Cu2O一样高。

  30. In a series of different humidity conditions , the SnO2 / Si-NPA relative humidity ( RH ) - sensitive were measured .

    在一系列不同的湿度条件下对SnO2/Si-NPA元件进行了湿敏测试。