晶体硅太阳能电池
- 网络crystalline silicon solar cell
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应用于晶体硅太阳能电池电极金属化的电极浆料也不例外,需要性能优良的粉体才能做出良好的浆料。
Applied to crystalline silicon solar cell the electrode paste for electrode metal is no exception , excellent powder to make a paste . This article required on the solar cell electronic paste one of the powder material .
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本文抓住晶体硅太阳能电池背面银电极材料这一技术难点,重点研究了晶体硅太阳能电池用银粉的制备方法以及银粉的性能对背面银浆性能的影响。
The thesis aims at solving technical difficulties of silver electrode material on the back of crystalline silicon solar cell , and thus puts emphasis on conductive silver powder preparation and effects of the silver powder performance on back silver paste of the cell .
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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 .
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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
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一般来说,以各种形成存在的过渡族金属都会损害硅基微电子器件或晶体硅太阳能电池的性能,特别是金属沉淀。
Generally speaking , each form of transitional metals is detrimental to silicon-based devices , especially silicide precipitate .
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总结各实验结果,制定出一套工业晶体硅太阳能电池栅线综合优化方案。
Summarize each experimental conclusion , develop a set of industrial crystalline silicon solar cells finger integrated optimization scheme .
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高效率低成本的晶体硅太阳能电池的制备对于大规模利用太阳能发电有着十分重要的意义。
High efficiency and low cost crystalline silicon solar cells are very important for the large-scale application of solar energy .
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介绍了绿色新兴能源燃料电池、晶体硅太阳能电池、化合物半导体太阳能电池制造技术中的精密网版印刷技术;
This article introduces the precise screen printing technology for fuel battery , crystal silicon solar battery and semiconductor solar battery .
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晶体硅太阳能电池的薄片化是进一步降低电池成本的关键技术。
Decreasing the thickness of crystalline silicon solar cells is the key technique to further reduce the cost of the cells .
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【译文】晶体硅太阳能电池在宇航计划上得到成功应用,因为在这类项目中,成本不成问题。
Crystalline silicon solar cells work well and are successfully used in the space program , where cost is not an issue .
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由于能源危机和传统能源对环境的污染,晶体硅太阳能电池成为全球关注的热点。
The crystalline silicon solar cells become a growing concern worldwide because of the energy crisis and environment pollution caused by traditional energy .
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在目前的光伏产业中,占有主导地位的晶体硅太阳能电池的制造需大量的高纯多晶硅材料。
In PV industry , crystalline silicon solar cells predominate in solar cell , which lead to a huge demand for high purity polysilicon .
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得到最佳参数后,我们再在硅片上生长相同的薄膜,对其是否能应用于晶体硅太阳能电池做了前期的探索研究。
After getting the best parameters , we grew the same films on Si for pre-research of its application on crystalline silicon solar cells .
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晶体硅太阳能电池是应用最广泛的一种半导体光电转换器件,提高光电转换效率一直是人们追求的目标。
The crystalline silicon solar cells are most widely used semiconductor optoelectronic devices and most of studies have devoted to improve their photoelectric performance .
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为了有效利用太阳光的能量;对晶体硅太阳能电池表面减反射结构的研究变得十分关键。
In order to use the energy of sunlight effectively , antireflective structure on the surface of the crystalline silicon solar cells become very critical .
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价值链各环节市场结构对利润分布的影响&以晶体硅太阳能电池产业价值链为例
Study of Market Structure of Tache as A Influencing Factors to the Value Distribution in Value Chain & The Case of Solar PV Battery Value Chain
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晶体硅太阳能电池的最大问题是对于硅的纯度要求很高,这使得生产过程中能耗和资金投入都比较大。
However , the biggest problem for crystalline silicon solar cells is the requirement of high purity silicon , which makes the capital investment and energy loss relatively large .
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目前,光伏发电中的太阳能电池仍然是以晶体硅太阳能电池为主,其市场份额占整个太阳能光伏发电市场的90%,大面积商品化的太阳能电池转换效率可达到18%-19%。
The silicon solar module is the main product in the solar electrical generation so far , with a share of 90 % in the whole solar electrical generation market . The efficiency of commercial conversion of solar module can reach 18 % - 19 % .
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第一太阳能公司的太阳能电池板平均效率为11-12%,而使用晶体硅的太阳能电池板效率为14-15%。
First Solar 's panels have an average efficiency rate of11-12 % as opposed to14-15 % for the silicon ones .