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首页> 外文期刊>Solar Energy >Simulation and investigation of perovskite/nano-pyramidal GeSe solar cell: Realizing high efficiency by controllable light trapping
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Simulation and investigation of perovskite/nano-pyramidal GeSe solar cell: Realizing high efficiency by controllable light trapping

机译:钙钛矿/纳米金字塔GEES太阳能电池模拟与调查:可控制光捕捉实现高效率

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Perovskite Solar Cells (PSC) have been elicited much interest within the photovoltaic industry due to their many performance advantages. One of the effective ways to enhance the Power Conversion Efficiency (PCE) of PSCs is to minimize light and electrical losses. To this end, we have focused on the use of nanostructured light absorbers in PSCs and have simulated these structures to understand their effects on the light absorption and electrical output of the cells. Given that perovskites do not absorb light of wavelengths higher than 800 nm, we used an extra absorption material - GeSe - which has a narrower bandgap and a wider absorption spectrum in order to increase the amount of light absorbed. GeSe Nano-pyramids (GSNPs) were also used in the active layer (perovskite) to manage input light. The use of such structures improved the short-current density (J(sc)) of the cell. The effects of changing the height of GeSe NPs were also investigated to determine the best height of NPs that produced the highest PCE. The optimal structure had NP height of 100 nm and resulted in J(sc) and PCE values of 24.83 mA/cm(2) and 18.49%, respectively, which were 25.65% and 21.80%, improvements over the planar design, respectively.
机译:由于其许多性能优势,佩洛夫斯基钛矿太阳能电池(PSC)在光伏产业中被引起了很多兴趣。提高PSC的功率转换效率(PCE)的有效方法之一是最小化光线和电损耗。为此,我们专注于在PSC中使用纳米结构光吸收器,并模拟这些结构以了解它们对细胞的光吸收和电输出的影响。鉴于Perovskites不吸收高于800nm的波长光,我们使用了额外的吸收材料 - GESE - 具有较窄的带隙和更广泛的吸收光谱,以增加吸收的光量。 GESE纳米金字塔(GSNP)也用于有源层(PEROVSKITE)以管理输入光。这种结构的使用改善了电池的短电流密度(J(SC))。还研究了改变GEES NPS高度的影响,以确定产生最高PCE的NP的最佳高度。最佳结构具有100nm的NP高度,并导致J(SC)和PCE值分别为24.83mA / cm(2)和18.49%,分别对平面设计的改进分别进行了25.65%和21.80%。

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