用PDMS模板纳米压印活性层提高倒置有机太阳能电池性能

Kaifang Qiu, Yang Hao, Linlin Shi, Ting Ji, F. Zhu, Yuying Hao, Yanxia Cui
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引用次数: 0

摘要

与无机材料相比,有机材料在太阳能电池中的潜在应用已经被广泛探索,以创造廉价和灵活的组件。然而,有机太阳能电池的功率转换效率(PCE)受到有机活性层吸收不足的严重制约。提高吸收效率的一种简单方法是增加有源层的厚度,但在电荷传输到电极的过程中会发生相当大的电损失。因此,有必要寻求在不增加活性层厚度的情况下提高活性层光吸收的有效途径。与正常配置的osc相比,反向配置的osc通常具有更高的PCE和更长的寿命。在这项研究中,我们通过使用PDMS印记的纳米印迹技术在有源层(PTB7:PC70BM)中引入图案结构,证明了倒置OSCs光伏性能的改善。通过调节有源层压印压力,优化了压印OSCs,使其具有最佳的光电性能。结果表明,当施加200 g重量时,纳米印迹细胞的吸收率明显高于对照细胞。同时,最佳印迹细胞的填充因子(FF)也从对照的68.0%提高到70.0%。开路电压(Voc)保持在0.73 V。总体而言,PCE达到6.95%,与对照细胞(6.54%)相比提高了6.0%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing performance of inverted organic solar cells by nano-imprinting the active layer with a PDMS template
The potential applications of organic materials in solar cells have been widely explored for the creation of inexpensive and flexible modules compared with their inorganic counterparts. However, the power conversion efficiency (PCE) of organic solar cells (OSCs) have been severely restricted on account of the insufficient light absorption in the organic active layers. A simple method to achieve higher absorption efficiency is to increase the thickness of the active layer, but considerable electrical loss can occur during charge transport to the electrodes. Therefore, it is necessary to seek some effective ways to enhance light absorption in active layer without increasing its thickness. OSCs with inverted configuration usually present higher PCE and longer lifetime than corresponding devices with regular configuration. In this study, we demonstrate an improvement in photovoltaic properties in inverted OSCs by introducing the patterned structures in the active layer (PTB7:PC70BM) using a nano-imprinting technique with a PDMS stamp. By adjusting pressure of imprinting the active layer, the imprinted OSCs were optimized, showing the optimal optoelectronic performances. The results indicated when the imprinted cell was pressed by a 200 g weight, the absorption of the nanoimprinted cell dramatically increased compared with the control cell. Meanwhile, the fill factor (FF) also increased from 68.0% for the control to 70.0% for the optimal imprinted cell. In addition, the open voltage (Voc) was maintained in 0.73 V. Overall, the PCE of 6.95% with a 6.0% enhancement compared to the control cell (6.54%) was achieved.
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