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Published on: March 2, 2021
Effective Regulation of Photovoltaic Performance of Organic Solar Cells by External Electric Field: A Comprehensive
Xiaowei Ding1, Huijie Guo1, Jingping Li1
1College of Physics, Liaoning University, Shenyang 110036, China.
Abstract:
Improving the performance of organic solar cells (OSCs) has emerged as a central research focus within organic photovoltaics in recent years. Applying an external electric field (Fext) to the photoactive layer in organic solar cells (OSCs) is an effective strategy to enhance device performance. Compared with conventional chemical modification techniques, this method offers advantages, such as tunability and reversibility. However, studies on its underlying microregulatory mechanisms remain limited. This study theoretically investigated the influence of Fext on charge transfer and transport rate in the 4,4'-(9H-fluorene-9,9-diyl)bis(N,N-diphenylaniline):(1,3,5-triazine-2,4,6-triyl)tris(benzene-3,1-diyl)tris(diphenylphosphine oxide) (DTF:PO-T2T) system. The results reveal that Fext mainly enhances the charge transfer rate by modulating the reorganization energy and further improves charge transport by affecting the electron and hole transfer integrals. Finally, parameters relevant to experimental characterization were theoretically evaluated. The results demonstrate that Fext exerts a substantial influence on the power conversion efficiency (PCE). When Fext = 3 × 10-5 au, the competitive relationship between open-circuit voltage (VOC) and short-circuit current density (JSC) can be effectively balanced, thereby maximizing the PCE. This work offers theoretical insights and optimization strategies for achieving high-performance OSCs.
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