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Design of a functional rare earth oxide up-conversion layer for bulk silicon cells

机译:用于块状硅电池的功能性稀土氧化物上转换层的设计

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Upconversion materials are typically tested using around 5mW of 1530nm laser illumination, which is equivalent to a solar concentration in excess of 1000 suns. An example of this can be found in [1] where the NaYF:Er material is placed in proximity to a fully processed bifacial cell. Consequently the most obvious application for upconversion is to improve Si cells for use in low to medium concentrator photovoltaic (CPV) systems (2–300x). Previously we have demonstrated [2] photocurrent via upconversion for a monolithically integrated rare earth oxide (REO) epitaxially grown on the front of a silicon test cell. The unique advantage arising from the integration of the REO directly onto the back of the silicon cell is that it can be processed using standard semiconductor techniques. This has the potential of lowering the cost of production because wafers could easily be scaled to 200mm diameter thereby accessing existing fabrication facilities. An increase in efficiency and a reduction in cost, presents an attractive opportunity for Si based photovoltaic (PV) and CPV
机译:通常使用大约5mW的1530nm激光照明测试上转换材料,这相当于1000多个太阳的太阳光浓度。一个例子可以在[1]中找到,其中将NaYF:Er材料放置在完全处理过的双面电池附近。因此,上转换最明显的应用是改进用于中低聚光光伏(CPV)系统(2–300x)的硅电池。先前我们已经证明了[2]通过上转换在硅测试电池正面外延生长的单片集成稀土氧化物(REO)产生的光电流。 REO直接集成到硅电池背面的独特优势在于可以使用标准的半导体技术对其进行处理。由于可以轻松地将晶圆缩放至200mm的直径,从而可以使用现有的制造设备,因此具有降低生产成本的潜力。效率的提高和成本的降低,为硅基光伏(PV)和CPV带来了诱人的机会

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