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Utilization of geometric light trapping in thin film silicon solar cells: simulations and experiments

机译:薄膜硅太阳能电池中几何光陷阱的利用:模拟和实验

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In this study, we present a new light absorption enhancement method for p-i-n thin film silicon solar cells using pyramidal surface structures, larger than the wavelength of visible light. Calculations show a maximum possible current enhancement of 45% compared with cells on a flat substrate. We deposited amorphous silicon (α-Si) thin film solar cells directly onto periodically pyramidal-structured polycarbonate (PC) substrates, which show a significant increase (30%) in short-circuit current over reference cells deposited on flat glass substrates. The current of the cells on our pyramidal structures on PC is only slightly lower than that of cells on Asahi U-type TCO glass (Asahi Glass Co., Tokyo, Japan), but suffer from a somewhat lower open circuit voltage and fill factor. Because the used substrates have a locally flat surface area due to the fabrication process, we believe that the current enhancement in the cells on structured PC can be increased using larger or more closely spaced pyramids, which can have a smaller flat surface area.
机译:在这项研究中,我们提出了一种新的光吸收增强方法,该方法使用金字塔形表面结构,比可见光的波长大,用于p-i-n薄膜硅太阳能电池。计算表明,与平面基板上的电池相比,最大可能的电流增强为45%。我们将非晶硅(α-Si)薄膜太阳能电池直接沉积在周期性金字塔结构的聚碳酸酯(PC)基板上,与沉积在平板玻璃基板上的参考电池相比,短路电流显示出明显的增加(30%)。 PC上的金字塔结构上的电池电流仅比旭U型TCO玻璃(日本东京的Asahi Glass Co.)上的电池电流略低,但开路电压和填充系数较低。由于所使用的基板由于制造工艺而具有局部平坦的表面积,因此我们相信,使用更大或更紧密间隔的棱锥(可以具有较小的平坦表面积)可以提高结构化PC上单元中的电流增强。

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