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Improving light trapping of polymer solar cell via doping a new array of triple core-shell spherical nanoparticles utilizing realistic modeling

机译:通过使用逼真的模型掺杂新的三核-壳球形纳米颗粒阵列来改善聚合物太阳能电池的光阱

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The local surface plasmon resonance (LSPR) effects of metallic nanoparticles (such as light scattering and giant local field) in organic materials can improve the optical absorption capability of organic solar cells. This is especially important for polymer solar cells where the active layer thickness has been limited ( 150 nm) due to short electron-hole diffusion length. LSPR effects depend on the features of nanoparticle, such as shape and size. Qua cubic nanoparticle produces a stronger LSPR compared to other shapes and increased LSPR effect increases the light absorption. However, fabrication of the cubic nanoparticle is much more difficult compared to fabrication of spherical ones. This study aims to increase LSPR effects of spherical nanoparticles and we propose the SiO2@Au@SiO2 new structure for them. Our simulation results demonstrate increase in power absorption and short circuit current of similar to 103% and similar to 118%, respectively, with square array of SiO2@Au@SiO2 nanoparticles with central nanoparticle inserted in thin active layer compared to the structure without nanoparticles. Subsequently, we propose the new square array without central nanoparticle for SiO2@Au@SiO2 nanoparticles. Calculations show significant enhancement in power absorption and short circuit current of respectively similar to 136% and similar to 154%, compared to the structure without nanoparticles. These improvements are justified pursuant to enhanced light trapping inside the active layer.
机译:有机材料中金属纳米粒子的局部表面等离子体共振(LSPR)效应(例如光散射和巨大的局部场)可以提高有机太阳能电池的光吸收能力。这对于由于短的电子-空穴扩散长度而限制了有源层厚度(<150 nm)的聚合物太阳能电池尤其重要。 LSPR效应取决于纳米粒子的特征,例如形状和大小。与其他形状相比,准立方纳米粒子可产生更强的LSPR,增强的LSPR效果可增加光吸收。然而,与球形纳米颗粒的制造相比,立方纳米颗粒的制造困难得多。这项研究旨在提高球形纳米颗粒的LSPR效应,我们提出了SiO2 @ Au @ SiO2的新结构。我们的模拟结果表明,与没有纳米颗粒的结构相比,在中心纳米颗粒插入薄活性层的情况下,方形阵列排列的SiO2 @ Au @ SiO2纳米颗粒的功率吸收和短路电流分别增加了103%和118%。随后,我们为SiO2 @ Au @ SiO2纳米粒子提出了一种没有中心纳米粒子的新型正方形阵列。计算表明,与没有纳米颗粒的结构相比,功率吸收和短路电流显着提高,分别接近136%和接近154%。这些改进是根据有源层内部增强的光捕获来证明的。

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