首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Improved light harvesting efficiency of semitransparent organic solar cells enabled by broadband/omnidirectional subwavelength antireflective architectures
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Improved light harvesting efficiency of semitransparent organic solar cells enabled by broadband/omnidirectional subwavelength antireflective architectures

机译:通过宽带/全向子波长抗反射架构实现的半透明有机太阳能电池的光收集效率

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We report organic solar cells (OSCs) with subwavelength architectured polydimethylsiloxane (SWA-PDMS) as an antireflective (AR) layer on a glass substrate for not only enhancing the efficiency but also increasing the transparency of the devices. These subwavelength architectures (SWAs) on PDMS layers are fabricated using a soft imprint lithography technique via an anodic aluminum oxide mold. The effect of optical characteristics of SWA-PDMS with respect to the period and diameter of SWAs, along with the theoretical analysis using rigorous coupled-wave analysis simulation, is investigated. Consequently, the SWA-PDMS/glass with a period and diameter of 125 nm and 80 nm, respectively, is obtained as the optimal sample, exhibiting the highest average transmittance (T-avg) of similar to 95.2%, which is much higher compared to that of bare glass (T-avg similar to 92.08%). By employing the optimal SWA-PDMS on the glass surface of opaque and semitransparent OSCs as an AR layer, their power conversion efficiency is improved from 8.67 to 10.59% and 7.07 to 8.52%, respectively. Additionally, the average visible transmittance (AVT) of the semitransparent OSC is increased from 23.0 to 26.2% with significantly improved color coordinates as the AR layer is employed. Also, the OSCs with SWA-PDMS having a relatively high hydrophobic nature exhibit a stable performance in the ambient environment.
机译:我们将有机太阳能电池(OSC)与亚体架构的聚二甲基硅氧烷(SWA-PDMS)作为玻璃基板上的抗反射(AR)层报告,不仅提高了效率,而且增加了器件的透明度。 PDMS层上的这些亚波长架构(SWAS)使用阳极氧化铝模具的软压印光刻技术制造。研究了SWA-PDMS对SWA的周期和直径的光学特性以及使用严格耦合波分析模拟的理论分析的影响。因此,分别获得具有125nm和80nm的周期和直径为125nm和80nm的SWA-PDMS /玻璃,其最佳样品具有与95.2%相似的最高平均透射率(T-AVG),比较高得多到裸露的玻璃(T-AVG类似于92.08%)。通过在不透明和半透明OSC的玻璃表面上使用最佳SWA-PDMS作为AR层,它们的功率转换效率分别从8.67%增加到10.59%,7.07%至8.52%。另外,半透明ORC的平均可见光透射率(AVT)从23.0增加到26.2%,随着所用AR层而显着改善的颜色坐标。此外,具有相对高的疏水性质的SWA-PDMS的OSC在环境环境中表现出稳定的性能。

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