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OPTO-ELECTRICAL ANALYSIS OF NANOCONE STRUCTURED ULTRATHIN SILICON SOLAR CELLS

机译:纳米核苷酸结构超薄硅太阳能电池的光学电气分析

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Light trapping via nanotexturing has emerged as a prominent method of achieving high light absorption in solar cells. We present an analytical model explaining the intrinsic limits on energy conversion efficiency in such nanotextured structures by using both optical and electrical techniques. Our model incorporates the fundamental loss mechanisms- Auger recombination and surface recombination- as well as the main structure design options- film thickness, doping and surface area. Validated against optical and electrical simulations, our model predicts that an optimized 3μm thick double-sided nanocone grating can yield a maximum solar conversion efficiency of 24.9% with a photocurrent of 36.6mA and an open-circuit voltage of 0.81 V.
机译:通过纳米纹理的光捕获已成为在太阳能电池中实现高光吸收的突出方法。我们通过使用光学和电技术,提出了一种解释了这种纳米横封结构中能量转换效率的内在限制的分析模型。我们的型号采用了根本损失机制 - 螺旋钻重组和表面复合 - 以及主要结构设计选项 - 膜厚度,掺杂和表面积。针对光学和电模拟验证,我们的模型预测优化的3μm厚的双面纳米碘镀铬光栅可以产生24.9%的最大太阳能转换效率,光电流为36.6mA,开路电压为0.81V。

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