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Effectively Improved SiO_2-TiO_2 Composite Films Applied in Commercial Multicrystalline Silicon Solar Cells

机译:有效改进的SiO_2-TiO_2复合薄膜在商用多晶硅太阳能电池中的应用

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摘要

Composite silicon dioxide-titanium dioxide (SiO_2-TiO_2) films are deposited on a large area of 15.6 × 15.6 cm~2 textured multicrystalline silicon solar cells to increase the incident light trapped within the device. For further improvement of the antireflective coatings (ARCs) quality, dimethylformamide (DMF) solution is added to the original SiO_2-TiO_2 solutions. DMF solution solves the cracking problem, thus effectively decreasing reflectance as well as surface recombination. The ARCs prepared by sol-gel process and plasma-enhanced chemical vapor deposition (PECVD) on multicrystalline silicon substrate are compared. The average efficiency of the devices with improved sol-gel ARCs is 16.3%, only 0.5% lower than that of devices with PECVD ARCs (16.8%). However, from equipment depreciation point of view (the expiration date of equipment is generally considered as 5 years), the running cost (USD/watt) of sol-gel technique is 80% lower than that of PECVD method for the first five years and 66% lower than that of PECVD method from the start of the sixth year. This result proves that sol-gel-deposited ARCs process has potential applications in manufacturing low-cost, large-area solar cells.
机译:复合二氧化硅-二氧化钛(SiO_2-TiO_2)薄膜沉积在大面积的15.6×15.6 cm〜2纹理化的多晶硅太阳能电池上,以增加捕获在器件内的入射光。为了进一步提高抗反射涂层(ARC)的质量,将二甲基甲酰胺(DMF)溶液添加到原始SiO_2-TiO_2溶液中。 DMF解决方案解决了开裂问题,从而有效降低了反射率以及表面重组。比较了通过溶胶-凝胶法和等离子体增强化学气相沉积(PECVD)在多晶硅衬底上制备的ARC。具有改进的溶胶凝胶ARC的设备的平均效率为16.3%,仅比具有PECVD ARC的设备(16.8%)低0.5%。但是,从设备折旧的角度考虑(通常将设备的失效日期视为5年),溶胶凝胶技术的运行成本(美元/瓦)比前五年的PECVD方法要低80%,并且从第六年开始,比PECVD方法降低了66%。该结果证明,溶胶-凝胶沉积的ARC工艺在制造低成本,大面积太阳能电池中具有潜在的应用。

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