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Enhanced photocurrent in thin-film amorphous silicon solar cells via shape controlled three-dimensional nanostructures

机译:通过形状可控的三维纳米结构增强薄膜非晶硅太阳能电池中的光电流

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In this paper, we have explored manufacturable approaches to sub-wavelength controlled three-dimensional (3D) nano-patterns with the goal of significantly enhancing the photocurrent in amorphous silicon solar cells. Here we demonstrate efficiency enhancement of about 50% over typical flat a-Si thin-film solar cells, and report an enhancement of 20% in optical absorption over Asahi textured glass by fabricating sub-wavelength nano-patterned a-Si on glass substrates. External quantum efficiency showed superior results for the 3D nano-patterned thin-film solar cells due to enhancement of broadband optical absorption. The results further indicate that this enhanced light trapping is achieved with minimal parasitic absorption losses in the deposited transparent conductive oxide for the nano-patterned substrate thin-film amorphous silicon solar cell configuration. Optical simulations are in good agreement with experimental results, and also show a significant enhancement in optical absorption, quantum efficiency and photocurrent.
机译:在本文中,我们探索了可制造方法来控制亚波长的三维(3D)纳米图案,目的是显着增强非晶硅太阳能电池中的光电流。在这里,我们证明了与典型的平面a-Si薄膜太阳能电池相比,效率提高了约50%,并且报告了通过在玻璃基板上制造亚波长纳米图案化a-Si,与旭纹玻璃相比,光吸收提高了20%。由于增强了宽带光吸收,外部量子效率对3D纳米图案化薄膜太阳能电池显示出优异的结果。结果还表明,对于纳米图案化的基板薄膜非晶硅太阳能电池配置,在沉积的透明导电氧化物中以最小的寄生吸收损失实现了这种增强的光捕获。光学模拟与实验结果非常吻合,并且显示出光吸收,量子效率和光电流的显着提高。

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