期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Emitter Quality Optimization Using Lightly Doped Phosphorus Diffusion and Thermal Oxide Anneal for Cell Efficiency Improvement in Multi-Crystalline Black Silicon Solar Cells
1
作者 Kishan Shetty Yudhbir Kaushal +1 位作者 Nagesh Chikkaiah Chandra Mauli Kumar 《Journal of Power and Energy Engineering》 2022年第3期35-47,共13页
Improving solar cell performance by increasing solar cell efficiency by various process optimization had always been a simple straight-forward methodology followed in a R&D or in a solar cell manufacturing company... Improving solar cell performance by increasing solar cell efficiency by various process optimization had always been a simple straight-forward methodology followed in a R&D or in a solar cell manufacturing company. This is also the most cost-effective practice to improve a product performance using the same technology without the need to procure alternative or expensive raw materials or by adopting advanced solar cell processing techniques. Aluminium Back Surface Field (Al-BSF) technology using multi-crystalline wafers (mc-Si) had been a well-established and a dominant product in the solar industry for more than two decades. However, as the industry progresses, the demand for high efficiency solar cells and modules started going up and full area Aluminium BSF based cells suffers from a lot of inherent limitations on cell efficiency. This is primarily due to the intrinsic high density of crystal lattice defects or otherwise called as grain boundary defects present dominantly only in mc-Si wafers. These grain boundaries tends to accumulate several defects and become trap centres which cause high recombination for minority carriers thereby exhibiting lower conversion efficiency and higher dispersion in electrical parameters in batches of tested cells. Years of research using this material have helped to derive the maximum benefits using this mc-Si wafer in producing industrial full area BSF cells and we can say with certainty that the efficiency potential has reached the saturation point with this technology. An interesting development that happened in the area of improving the final product performance using mc-Si wafers at both cell and module level, is by replacing the conventional acid texturing process with an introduction of a nano-texturing process called Metal Catalysed Chemical Etching (MCCE) using specialized chemicals which improves the light trapping capabilities by creation of inverted pyramid texture on the silicon wafer surface and thereby enabling the wafers to absorb sunlight over a broader range of 展开更多
关键词 Lightly Doped Emitter Oxidation Annealing Metal Catalyst Chemical Etching phosphorus silicate glass Diffusion
下载PDF
硅磷酸盐玻璃缓蚀剂在地热井阻垢中的应用研究 被引量:1
2
作者 李彬 《包头职业技术学院学报》 2015年第1期23-26,共4页
为解决内蒙古地矿局矿业公司1号地热井的结垢问题,对磷硅酸盐玻璃缓蚀剂除垢法进行了研究,发现硅磷酸盐玻璃缓蚀剂使水中的钙、镁离子与硅磷酸盐玻璃形成络合物,极大降低了水中钙、镁离子的含量,从而降低水的硬度最终抑制结垢。分别从... 为解决内蒙古地矿局矿业公司1号地热井的结垢问题,对磷硅酸盐玻璃缓蚀剂除垢法进行了研究,发现硅磷酸盐玻璃缓蚀剂使水中的钙、镁离子与硅磷酸盐玻璃形成络合物,极大降低了水中钙、镁离子的含量,从而降低水的硬度最终抑制结垢。分别从酸的用量、PH值、温度、水流速度等方面进行试验研究,筛选出最佳条件。经过处理的地热水中微量元素含量变化很小,温度降低幅度不大(温度下降5℃左右),除垢效果良好。该法生产工艺简单,虽然药剂价格比较高,但用量少,投加简单方便。 展开更多
关键词 硅磷酸盐玻璃缓蚀 除垢 地热井
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部