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Absorption Enhancement of Organic Solar Cell using Aluminum Oxide as a Photonic Crystal

机译:氧化铝作为光子晶体增强有机太阳能电池的吸收

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Enhancement of light absorption in solar cell presents a strong challenge to its overall performance. We analyzed an Organic Solar Cell (OSC) with Photonic Crystal (PC) structure using Finite Difference Time Domain (FDTD) method. Aluminum oxide (Al2O3) has been used as photonic crystal structure and the lattice structure has been chosen to be hexagonal. Absorption enhancement has been observed by changing the height of the Hexagonal Lattice structure (HLS). When height is increased to 0.26 and radius to period ratio (r/a ratio) is set to 0.4, there is a significant increase of absorption in the middle wavelength region approximately from 463 nm to 575 nm and a significant decrease in lower wavelength. As the height is increased further, these changes in absorption begins to increase and at a certain value, these changes begin to reverse. Almost same phenomena occur when r/a ratio is 0.2 and 0.3 taken at approximately same height.Journal of Bangladesh Academy of Sciences, Vol. 42, No. 1, 87-97, 2018.
机译:太阳能电池中光吸收的增强对其整体性能提出了严峻的挑战。我们使用有限时域(FDTD)方法分析了具有光子晶体(PC)结构的有机太阳能电池(OSC)。氧化铝(Al2O3)已被用作光子晶体结构,晶格结构已选择为六边形。通过改变六角格结构(HLS)的高度可以观察到吸收增强。当高度增加到0.26且半径周期比(r / a比)设置为0.4时,在大约463 nm至575 nm的中间波长区域中吸收率显着增加,而较低波长的吸收率显着下降。随着高度的进一步增加,这些吸收的变化开始增加,并且在一定值下,这些变化开始反向。当r / a比率为0.2和0.3时,几乎在相同的高度上会发生几乎相同的现象。 42,No.1,87-97,2018。

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