Issue 38, 2022

Highly efficient layer-by-layer large-scale manufacturing of polymer solar cells with minimized device-to-device variations by employing benzothiadiazole-based solid additives

Abstract

The layer-by-layer (LBL) processing approach has recently been under intensive investigation to fabricate efficient polymer solar cells (PSCs) reconsidering its many positive aspects over the bulk-heterojunction configuration. Moreover, with recently reported successful solid additives as morphology controllers, they are becoming key elements for high-performance PSCs; however, their application in LBL systems has been scarce. Herein, we carry out a comprehensive investigation into the effect of benzothiadiazole (BT) and its fluorinated analogs (FBT and 2FBT) as solid additives on the device performance of a PM6/Y6-based LBL platform. The use of FBT in the PM6 donor layer results in a suitable morphology that ensures efficient charge transport/generation properties and suppresses recombination loss, boosting the photovoltaic performance of the LBL device. These intriguing results prompt us to further study the FBT treatment in other LBL systems (PTQ10/Y6 and PM6/BTP-eC9), leading to a considerable efficiency of up to 17.71% with low inevitable convolution arising from the molecular weight variations of the used polymers. Besides, we also demonstrate efficient large-area FBT-processed LBL PSCs (efficiencies of 16.10% (0.92 cm2) and 10.93% (2.50 cm2)) with high device reproducibility. This study is not only invaluable in shaping our understanding of LBL PSCs, but also provides the possibility of overcoming their device-to-device variations in both small- and large-area single cells.

Graphical abstract: Highly efficient layer-by-layer large-scale manufacturing of polymer solar cells with minimized device-to-device variations by employing benzothiadiazole-based solid additives

Supplementary files

Article information

Article type
Paper
Submitted
15 Jun 2022
Accepted
25 Aug 2022
First published
26 Aug 2022

J. Mater. Chem. A, 2022,10, 20606-20615

Highly efficient layer-by-layer large-scale manufacturing of polymer solar cells with minimized device-to-device variations by employing benzothiadiazole-based solid additives

J. Oh, S. Jung, S. Kang, G. Park, M. Jeong, S. Kim, S. Lee, W. Kim, B. Lee, S. M. Lee and C. Yang, J. Mater. Chem. A, 2022, 10, 20606 DOI: 10.1039/D2TA04776D

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