crystalline silicon
[晶体] 晶体硅
2025-09-06 21:48 浏览次数 6
[晶体] 晶体硅
crystalline silicon solar cell硅太阳电池
crystalline-silicon TFT水晶硅TFT
mono crystalline silicon film单晶硅薄膜
layer single crystalline silicon单硅晶体层
crystalline silicon photovoltaic cells太阳能电池
multi- crystalline-silicon多晶硅
crystalline-silicon layer根据论文所述
crystalline silicon photovoltaics晶体硅光伏电池
single crystalline silicon单晶硅
the defects or precipitates in crystalline silicon may influence the properties of different silicon-base devices noticeably.
晶体硅中的杂质或缺陷会显着地影响各种硅基器件的性能。
that「s because they operate at low temperatures to cool crystalline silicon solar cells, which lets the silicon generate more electricity but isn」ta very efficient way to gather heat.
原因是,为了使晶体硅太阳能电池冷却,该系统在低温下工作。因此,硅体能产出更多的电能,却不能有效地产生热量。
these have shown efficiencies on par with crystalline silicon and can be made on flexible substrates.
这种材料表现出了和结晶硅相当的性能,而且也可以附着在可卷曲的基片上。
as one of the key processes, phosphorous gettering treatment has been widely applied to improve the electrical properties of crystalline silicon which is the main photovoltaic material.
磷吸杂作为提升晶体硅材料性能的主要手段被广泛应用在太阳电池的生产工艺中。
the invention also provides a preparation method of the slurry for the crystalline silicon solar batteries.
本发明还提供了上述晶体硅太阳能电池用浆料的制备方法。
crystalline silicon must be made200microns thick to absorb a sufficient amount of sunlight for efficient energy conversion whereas only1micron of the proper amorphous materials is necessary.
必须要使晶体硅达到200微米厚,才能吸收足够的阳光进行有效的能量转换,而合适的非结晶体材料只要1微米厚就够了。
our main products include amorphous silicon solar cells and crystalline silicon solar modules, which are widely used in calculators, solar power watches, thermometers and humidity meters, solar…
产品广泛应用于计算器、太阳能手表、太阳能温湿度计、太阳能玩具、太阳能草坪灯、庭院灯、手机充电器、光伏发电等电子光电领域…
adoption of international most advanced production technology and equipment to produce high conversion efficiency of crystalline silicon solar cells.
国际最先进的生产技术和设备,通过生产高结晶硅太阳能电池的转换效率。
in this paper, the preparation technology as well as the latest results of crystalline silicon thin film solar cells in terms of two routes is reviewed.
本文分别从这两个方向综述了目前国外晶体硅薄膜电池制备技术的最新进展,最新实验室研究结果。
along with the rapid development in photovoltaic market, silicon is used to produce solar cell more than 90% as the starting material for crystalline silicon wafers.
随着光伏产业的发展,硅作为生产晶体硅片太阳电池的基础材料,其应用已经超过了90%。
the spectral response measurements for crystalline silicon solar cells were carried out.
并对晶体硅太阳电池光谱响应进行了实际测量。
the high efficiency, low-cost solar cells will be the mainstream of crystalline silicon solar cells.
高效率、低成本是晶体硅太阳电池发展的主流方向。
in this paper, aluminum paste and sintering procedure effect on the bsf of crystalline silicon solar cells have been analyzed.
本文分析研究了铝浆及烧结工艺对晶体硅太阳电池背场的影响。
excellent long-term electrical stability through crystalline silicon technology. excellent low light reaction thanks to parallel resistance checks on every cell.
晶体硅工艺决定了电池片长期稳定的优良电性能,良好的弱光响应得益于并联电阻。
new energy finance found that thin-film solar will be about 25% cheaper than crystalline silicon technology.
新能源财经公司发现,薄膜太阳电池将比结晶硅技术便宜25%。
still, xunlight's flexible pv modules are only about 8 percent efficient, while some crystalline silicon modules on the market are more than 20 percent efficient.
xunlight的可卷曲光电板依然只能达到大约8%的效率,而市场上有些结晶硅板已经能达到超过20%的效率。