首页> 外文会议>Conference on Organic, Hybrid, and Perovskite Photovoltaics XVIII >Plasmon Enhanced Power Conversion Efficiency in Inverted Bulk Heteroj unction Organic Solar Cell
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Plasmon Enhanced Power Conversion Efficiency in Inverted Bulk Heteroj unction Organic Solar Cell

机译:倒置散​​装杂交有机太阳能电池中的等离子体增强功率转换效率

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P3HT:PCBM is one of the most studied polymer-fiillerene system. However the reported power conversion efficiency (PCE) values falls within the range of 4% to 5%. The thin film architecture in OPVs exhibits low PCE compared to inorganic photovoltaic cells. This is mainly due to the low exciton diffusion length that limits the active layer thickness which in turn reduces the absorption of incident light. Several strategies are adapted in order to increase the absorption in the active layer without increasing the film thickness. Inclusion of metal nanoparticles into the polymer layer of bulk heterojunction (BHJ) solar cells is one of the promising methods. Incorporation of metal nanostructures increases the absorption of organic materials due to the high electromagnetic field strength in the vicinity of the excited surface plasmons. In this work, we used ~ 60 ran Au plasmonic structures to improve the efficiency of organic solar cell. The prepared metal nano structures were characterized through scanning electron microscopy (SEM), and UV-Visible spectroscopy techniques. These prepared metallic nanoparticles can be incorporated either into the electron transport layer (ETL) or into the active P3HT:PC_(71)BM layer. The effect of incorporation of plasmonic gold (Au) nanoparticle in the inverted bulk heterojunction organic photovoltaic cells (OPVs) of P3HT:PC_(71)BM fabricated in ambient air condition is in progress. Initial studies shows an 8.5% enhancement in the PCE with the incorporation of Au nanoparticles under AM1.5G light of intensity 1 Sun.
机译:P3HT:PCBM是最受研究的聚合物 - 菲利烯系统中的一种。然而,报告的电力转换效率(PCE)值落在4%至5%的范围内。与无机光伏电池相比,OPV的薄膜架构表现出低PCE。这主要是由于极低的激子扩散长度限制了有源层厚度,这反过来减少了入射光的吸收。改编了几种策略以增加有源层的吸收而不增加膜厚度。将金属纳米颗粒包含到散装异质结(BHJ)太阳能电池的聚合物层中是有希望的方法之一。金属纳米结构的掺入增加了由于励磁表面等离子体附近的高电磁场强度导致有机材料的吸收。在这项工作中,我们使用了〜60 RAN AU等离子体结构来提高有机太阳能电池的效率。通过扫描电子显微镜(SEM)和UV可见光谱技术,表征制备的金属纳米结构。这些制备的金属纳米颗粒可以掺入电子传输层(ETL)中或在活性P3HT:PC_(71)BM层中。在环境空气条件下制造的P3HT:PC_(71)BM的倒置块状异质结合有机光伏电池(OPVS)中的抗体金(Au)纳米粒子的效果正在进行中。初步研究显示PCE中的8.5%增强,并在AM1.5g强度1 Sun下掺入Au纳米颗粒。

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