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Performance enhancement of polymer solar cells using copper oxide nanoparticles

机译:使用氧化铜纳米粒子增强聚合物太阳能电池的性能

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Copper oxide (CuO) is a p-type semiconductor with a band gap energy of 1.5 eV, this is close to the ideal energy gap of 1.4 eV required for solar cells to allow good solar spectral absorption. The inherent electrical characteristics of CuO nanoparticles make them attractive candidates for improving the performance of polymer solar cells when incorporated into the active polymer layer. The UV-visible absorption spectra and external quantum efficiency of P3HT/PC70BM solar cells containing different weight percentages of CuO nanoparticles showed a clear enhancement in the photo absorption of the active layer, this increased the power conversion efficiency of the solar cells by 24% in comparison to the reference cell. The short circuit current of the reference cell was found to be 5.234 mA cm(-2) and it seemed to increase to 6.484 mA cm(-2) in cells containing 0.6 mg of CuO NPs; in addition, the fill factor increased from 61.15% to 68.0%, showing an enhancement of 11.2%. These observations suggest that the optimum concentration of CuO nanoparticles was 0.6 mg in the active layer. These significant findings can be applied to design high-efficiency polymer solar cells containing inorganic nanoparticles.
机译:氧化铜(CuO)是一种带隙能为1.5 eV的p型半导体,它接近于太阳能电池以实现良好的太阳光谱吸收所需的理想能隙1.4 eV。 CuO纳米颗粒的固有电学特性使其成为吸引人的候选者,可用于将其掺入活性聚合物层中以改善聚合物太阳能电池的性能。包含不同重量百分比的CuO纳米颗粒的P3HT / PC70BM太阳能电池的紫外-可见吸收光谱和外部量子效率显示出活性层的光吸收明显增强,这使太阳能电池的功率转换效率提高了24%。与参考单元比较。发现参考电池的短路电流为5.234 mA cm(-2),在包含0.6 mg CuO NP的电池中,短路电流似乎增加到6.484 mA cm(-2)。此外,填充因子从61.15%增加到68.0%,提高了11.2%。这些观察结果表明,活性层​​中CuO纳米颗粒的最佳浓度为0.6 mg。这些重要发现可用于设计包含无机纳米粒子的高效聚合物太阳能电池。

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