Optimization of Fabrication Process of Stretchable, Transparent PEDOT:PSS Electrodes for Optoelectronic Applications

被引:0
作者
Dong-Hyeok Kim
Ji-Hye Kim
Ju-Hee So
Hyung-Jun Koo
机构
[1] Seoul National University of Science and Technology,Department of Chemical and Biomolecular Engineering
[2] Seoul National University of Science and Technology,Department of Energy and Chemical Engineering
[3] Korea Institute of Industrial Technology,Material and Component Convergence R&D Department
来源
Korean Journal of Chemical Engineering | 2024年 / 41卷
关键词
PEDOT:PSS; Transparent electrode; Stretchable electrode; Solvent treatment; Perovskite solar cell;
D O I
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中图分类号
学科分类号
摘要
Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), a conductive polymer, is one of the candidate materials for stretchable, transparent electrodes in wearable optoelectronic devices. The treatment of PEDOT:PSS films with organic solvents, e.g., methanol in this study, and acids improves the sheet conductance of the polymer film. This study presents a fabrication process to maximize the conductance of the PEDOT:PSS film, by optimizing the methanol treatment method. Two treatment methods, post-treatment and in-situ treatment, are compared. The in-situ treatment at the optimal methanol concentration is found to be slightly more effective than the post-treatment in reducing the resistance of the PEDOT:PSS films. Forming multilayers of the PEDOT:PSS film further reduces the sheet resistance. However, the multilayer structure also decreases the optical transmittance, which is undesirable in optoelectronic applications. As a result, two layers of the PEDOT:PSS film are selected as an optimal number of layers in terms of conductance and transmittance. The double-layered PEDOT:PSS film coated on a stretchable polydimethylsiloxane (PDMS) substrate demonstrates stable strain-dependent resistance up to 100% strain. Finally, the stretchable PEDOT:PSS electrode fabricated by the optimized process was used as the transparent electrode for a perovskite solar cell, exhibiting typical J−V characteristics with a power conversion efficiency of 1.65%.
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页码:453 / 459
页数:6
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