首页> 外文期刊>International Journal of Photoenergy >Enhancing Light-Trapping Properties of Amorphous Si Thin-Film Solar Cells Containing High-Reflective Silver Conductors Fabricated Using a Nonvacuum Process
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Enhancing Light-Trapping Properties of Amorphous Si Thin-Film Solar Cells Containing High-Reflective Silver Conductors Fabricated Using a Nonvacuum Process

机译:增强使用非真空工艺制造的包含高反射银导体的非晶硅薄膜太阳能电池的光俘获性能

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摘要

We proposed a low-cost and highly reflective liquid organic sheet silver conductor using back contact reflectors in amorphous silicon (a-Si) single junction superstrate configuration thin-film solar cells produced using a nonvacuum screen printing process. A comparison of silver conductor samples with vacuum-system-sputtered silver samples indicated that the short-circuit current density (Jsc) of sheet silver conductor cells was higher than 1.25 mA/cm~2. Using external quantum efficiency measurements, the sheet silver conductor using back contact reflectors in cells was observed to effectively enhance the light-trapping ability in a long wavelength region (between 600 nm and 800 nm). Consequently, we achieved an optimal initial active area efficiency and module conversion efficiency of 9.02% and 6.55%, respectively, for the a-Si solar cells. The results indicated that the highly reflective sheet silver conductor back contact reflector layer prepared using a nonvacuum process is a suitable candidate for high-performance a-Si thin-film solar cells.
机译:我们提出了一种低成本和高反射率的液态有机片状银导体,该导体使用无触点丝网印刷工艺生产的非晶硅(a-Si)单结叠层配置薄膜太阳能电池中的背接触反射器。银导体样品与真空系统溅射银样品的比较表明,片状银导体电池的短路电流密度(Jsc)高于1.25 mA / cm〜2。使用外部量子效率测量,观察到在电池中使用背接触反射器的片状银导体可有效增强长波长区域(600 nm至800 nm之间)的光捕获能力。因此,对于a-Si太阳能电池,我们分别获得了9.02%和6.55%的最佳初始有源区效率和模块转换效率。结果表明,使用非真空工艺制备的高反射片状银导体背接触反射器层是高性能a-Si薄膜太阳能电池的合适候选材料。

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