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首页> 外文期刊>International Journal of Photoenergy >MOCVD ZnO/Screen Printed Ag Back Reflector for Flexible Thin Film Silicon Solar Cell Application
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MOCVD ZnO/Screen Printed Ag Back Reflector for Flexible Thin Film Silicon Solar Cell Application

机译:用于柔性薄膜硅太阳能电池应用的MOCVD ZnO /丝网印刷Ag背反射器

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We have prepared Ag back electrode by screen printing technique and developed MOCVD ZnO/screen printed Ag back reflector for flexible thin film silicon solar cell application. A discontinuity and poor contact interface between the MOCVD ZnO and screen printed Ag layers caused poor open circuit voltage (V_(oc)) and low fill factor (FF); however, an insertion of a thin sputtered ZnO layer at the interface could solve this problem. The n type hydrogenated amorphous silicon (a-Si:H) film is preferable for the deposition on the surface of MOCVD ZnO film rather than the microcrystalline film due to its less sensitivity to textured surface, and this allowed an improvement in the FF. The n-i-p flexible amorphous silicon solar cell using the MOCVD ZnO/screen printed Ag back reflector showed an initial efficiency of 6.2% with V_(oc) = 0.86 V, J_(sc) = 12.4 mA/cm~2, and FF = 0.58 (1 cm~2). The identical quantum efficiency and comparable performance to the cells using conventional sputtered Ag back electrode have verified the potential of the MOCVD ZnO/screen printed Ag back reflector and possible opportunity to use the screen printed Ag thick film for flexible thin film silicon solar cells.
机译:我们已经通过丝网印刷技术制备了Ag背电极,并开发了用于柔性薄膜硅太阳能电池应用的MOCVD ZnO /丝网印刷Ag背反射器。 MOCVD ZnO和丝网印刷的Ag层之间的不连续性和不良的接触界面会导致不良的开路电压(V_(oc))和较低的填充系数(FF);但是,在界面处插入一层薄的溅射ZnO层可以解决此问题。由于n型氢化非晶硅(a-Si:H)膜对纹理化表面的敏感性较低,因此优选在MOCVD ZnO膜的表面而不是在微晶膜上进行沉积,这是因为其对纹理化表面的敏感性较低。使用MOCVD ZnO /丝网印刷Ag背反射器的压区柔性非晶硅太阳能电池在V_(oc)= 0.86 V,J_(sc)= 12.4 mA / cm〜2和FF = 0.58( 1厘米〜2)。与使用常规溅射Ag背电极的电池相同的量子效率和可比的性能证明了MOCVD ZnO /丝网印刷的Ag背反射器的潜力,并为将丝网印刷的Ag厚膜用于柔性薄膜硅太阳能电池提供了可能的机会。

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