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Design principles of nanostructured window solar cells

机译:纳米结构窗口太阳能电池的设计原理

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Nanostructures in III-V solar cells have been widely investigated. Due to the enhancement in photon absorption, higher short-circuit current has been achieved in a number of previous reports. However, many of the nanostructured solar cells suffer from low open circuit voltage and low fill factor, which result from poor junction quality and high non-radiative recombination. Such problems can be resolved by utilizing both a nanostructured III-V window layer and planar p-n junction. In this work, we demonstrate the design and optimization of nanostructured window solar cells through a set of carefully designed experiments. A systematic study based on device fabrication, characterization and simulation is presented. This work shows that reducing absorption and minority carrier loss inside the nanostructured window are key to further improve the performance of nanostructured window solar cells.
机译:III-V太阳能电池中的纳米结构已被广泛研究。由于光子吸收的增强,在许多先前的报告中已经实现了更高的短路电流。然而,许多纳米结构的太阳能电池遭受低的开路电压和低的填充因数,这是由于不良的结质量和高的非辐射复合导致的。这些问题可以通过同时使用纳米结构的III-V窗口层和平面p-n结来解决。在这项工作中,我们通过一组精心设计的实验来演示纳米结构窗口太阳能电池的设计和优化。提出了基于器件制造,表征和仿真的系统研究。这项工作表明,减少纳米结构窗口内部的吸收和少数载流子损耗是进一步提高纳米结构窗口太阳能电池性能的关键。

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