晶体硅

  • 网络crystalline silicon;c-Si;Si-Si;x-Si
晶体硅晶体硅
  1. 以国产单晶硅片为基片,以现行晶体硅太阳电池丝网印刷工业化生产工艺为基础,扩散前添加上丝网印刷高浓度磷浆这一工艺步骤,利用一次扩散的方法制作了太阳电池。

    And using domestic mono-crystalline silicon wafers , and based on the screen printed C-Si solar cells industrial processes , through adding one process of screen printing high concentration phosphor paste before diffusion and using only one step diffusion , a kind of solar cells are fabricated .

  2. 钝化机理研究获得了表面复合对不同表面掺杂浓度晶体硅太阳电池性能的影响、表面和界面复合速度的理论表达式;

    Research on surface and grain boundary passivation mechanism obtained effects of surface recombination on crystalline silicon solar cell performance and the theoretical expression of grain boundary recombination velocity .

  3. 关于弱光下晶体硅太阳电池开路电压V(oc)讨论的初步总结

    Open Circuit Voltage ( Voc ) of Crystalline-silicon Solar Cells under Low-intensity Light

  4. 晶体硅太阳电池TiO2与SiN减反射膜对比研究

    Comparing Research on TiO_2 Anti-reflection Coating ( ARC ) and SiN ARC of Crystalline Si Solar Sells

  5. 而镶嵌在SiO2中的纳米晶体硅(nc-Si:SiO2)被认为是一种有希望的硅光源材料。

    Silicon nanocrystals embedded in SiO2 ( nc-Si : SiO2 ) is considered a promising silicon light source material .

  6. 本文所研究的主要问题是低成本晶体硅太阳电池在工业化生产中的扩散制作p-n结工艺。

    In this paper , the main topic is diffusion theory and process used in high throughput production lines for low cost crystalline silicon solar cells .

  7. 文章运用美国宾州大学发展的AMPS程序模拟计算了n-型纳米硅(n+-nc-Si∶H)/p-型晶体硅(p-c-Si)异质结太阳电池的光伏特性。

    AMPS simulator , which was developed by Pennsylvania State University , has been used to simulate photovoltaic performances of nc-Si ∶ H / c-Si solar cells .

  8. 高效刻槽埋栅晶体硅太阳电池(BCSC)的研究

    Research of Hight Efficiency Buried Contact Silicon Solar Cells

  9. HIT(HeterojunctionwithIntrinsicThinLayer)太阳电池具有高效、稳定和低价等优点,它结合了非晶硅薄膜的低温沉积工艺和晶体硅的高迁移率优势,迅速抢占了国际光伏市场。

    HIT ( Heterojunction with Intrinsic Thin Layer ) solar cell has advantages of high efficiency , stability and low costs . It combines low-temperature deposition process of amorphous silicon films with high mobility of crystal silicon and quickly seizes the international PV market .

  10. 氢化非晶硅(a-Si:H)在器件应用领域被认为是极为重要的材料,而晶体硅材料制成的电池一直是PV(Photovoltaic)市场上的主导产品。

    Hydrogenated amorphous silicon ( a-Si : H ) is considered very important materials in device application field , and battery made of crystalline silicon material has been the leading product in the market of PV ( Photovoltaic ) .

  11. 在商业化晶体硅太阳电池制造技术中,广泛采用丝网印刷铝浆烧结工艺制作铝背场(BSF)。

    Screen-printing ( SP ) aluminum paste and sintering procedure that make BSF are widely used in mass production of crystalline silicon solar cells .

  12. 在晶体硅太阳能电池可利用的波段中,波长大于600nm的光子占总光子数的60%左右。

    Among the photons available to crystalline Si solar cells , about 60 % of the solar photon flux occurs at wavelength greater than 600 nm .

  13. 有人在晶体硅和非晶硅太阳电池表面制备了大颗粒金属纳米粒子,并通过纳米粒子LSPR增强光散射使太阳电池光吸收和光谱响应得到增加。

    It has been reported that light absorption and spectra response were enhanced by employing large metallic nanoparticles on top of crystalline silicon and a-Si : H solar cells .

  14. 拉丁文:燧石(Silex)由瑞典化学家贝采利乌斯(J.J.Berzeliuz)于1810年在加热石英砂、炭和铁时发现,晶体硅由法国人德维尔(S.C.Deville)于1854年制得。

    Silicon was coined in 1817 by the British chemist Thomas Thomson . Like the slightly earlier silica , it was based on Latin silex'flint . " From the same source comes silicone , which dates from the 1860s .

  15. 弱光下晶体硅太阳电池的开路电压

    The open-circuit voltage of crystalline silicon solar cells under weak illumination

  16. 晶体硅粒太阳电池的硅粒层研究

    The research on silicon grain layer for grain silicon solar cell

  17. 晶体硅光伏组件设计制造的可靠性研究

    Reliability Research of Design and Manufacture for Crystalline Silicon PV Module

  18. 这种半导体管是由称为非晶体硅的材料制成。

    These other transistors are made with what is called amorphous silicon .

  19. 其中,过渡族金属就是晶体硅中非常重要的杂质元素。

    Transitional metals are some of important impurities in silicon .

  20. 晶体硅太阳电池最大功率下负载的函数表达

    Theoretic Expression of Silicon Solar Cell Load Resistance at Maximum Power Point

  21. 晶体硅太阳电池扩散气氛场均匀性研究

    Research on the diffusion air-flowing environment uniformity of crystalline silicon solar cells

  22. 晶体硅钝化技术是提高太阳电池转化效率的重要手段。

    Passivation is very important for high efficiency crystalline silicon solar cells .

  23. 晶体硅中氢钝化硼的机理

    Mechanism of the Hydrogen Passivation of Boron in Crystalline Silicon

  24. 晶体硅太阳电池及其电子辐照研究

    Research on Crystalline Silicon Solar Cells and Their Electron Irradiation

  25. 晶体硅太阳电池铝背场的研究

    The study of aluminum back - surface - field in silicon solar cells

  26. 晶体硅扩散层有效杂质浓度分布的测量

    The measurement of the effective doping concentration profile in crystalline silicon diffusion layer

  27. 热性能对晶体硅太阳能电池的效率影响研究

    Thermal Properties of Crystalline Silicon Solar Cells on the Efficiency of Impact Study

  28. 商业化晶体硅太阳电池电极图形优化设计

    A optimum design for commercial crystalline-silicon solar cell electrode

  29. 晶体硅太阳电池丝网印刷电极接触电阻及其测量

    The measurement of screen printed finger contact resistance on crystalline silicon solar cell

  30. 晶体硅薄膜的低温制备技术及其性能研究

    Study on Low Temperature Preparation and Optical Properties of Crystalline Silicon Thin Films