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Polymer solar cells with enhanced power conversion efficiency using nanomaterials and laser techniques

机译:聚合物太阳能电池具有增强的功率转换效率,使用纳米材料和激光技术

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Organic solar cells are photovoltaic cells and a type of green energy source with great potential application due to low production costs and mechanical flexibility. This study focused on the study of the electrical, optical and structure properties of polymer solar cells (PSCs) with many layers using newly synthesised polyimine. The molecular structure of the polyimine was characterised by Fourier transformation infrared and nuclear magnetic resonance spectroscopies as well as thermogravimetric analysis. The incorporated Al2O3 and TiO2 nanoparticles (NPs) in the active layer of the PSCs increased the absorbance of the polymer. Solar cells were constructed with a suitable coating and good efficiency using a spin-coating technique, and the efficiency was enhanced using a laser. The efficiencies of the PSCs that contain Al2O3 NPs before using a laser at 3.7% and after using a laser at 5.6% as well as the PSCs that contain TiO2 before using a laser at 10.052 and 12.3% were investigated. Importantly, this study provides a new approach for enhancing the performance of PSCsusing nanomaterials and laser techniques
机译:有机太阳能电池是光伏电池和一种由于生产成本低和机械灵活性而具有巨大潜在应用的绿色能源。该研究专注于使用新合成的聚亚胺的许多层的聚合物太阳能电池(PSC)的电气,光学和结构性能研究。聚氨片的分子结构的特征在于傅里叶变换红外和核磁共振光谱以及热重分析。在PSC的有源层中掺入的Al 2 O 3和TiO 2纳米颗粒(NPS)增加了聚合物的吸光度。使用旋涂技术以合适的涂层和良好的效率构建太阳能电池,使用激光增强效率。研究了在3.7%和5.6%的激光下和在10.052时使用激光器的激光器和5.052和12.3%含有TiO 2的PSC之前使用的PSC含有Al 2 O 3 NPS的PSC效率。重要的是,该研究提供了一种提高PSCSUSING纳米材料和激光技术的性能的新方法

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