Developing Screen-Printing Processes for Silver Electrodes Towards All-Solution Coating Processes for Solar Cells

In recent years, third-generation solar cells have experienced a remarkable growth in efficiency, making them a highly promising alternative energy solution. Currently, high-efficiency solar cells often use top electrodes fabricated by thermal evaporation, which rely on high-cost and high energy-con...

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Veröffentlicht in:Polymers 2024-10, Vol.16 (21), p.3012
Hauptverfasser: Chung, Tsui-Yun, Cha, Hou-Chin, Chuang, Chih-Min, Tsao, Cheng-Si, Glowienka, Damian, Wang, Yi-Han, Wu, Hui-Chun, Huang, Yu-Ching
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Sprache:eng
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Zusammenfassung:In recent years, third-generation solar cells have experienced a remarkable growth in efficiency, making them a highly promising alternative energy solution. Currently, high-efficiency solar cells often use top electrodes fabricated by thermal evaporation, which rely on high-cost and high energy-consumption vacuum equipment, raising significant concerns for mass production. This study develops a method for fabricating silver electrodes using the screen-printing process, aiming to achieve solar cell production through an all-solution coating process. By selecting appropriate blocking-layer materials and optimizing the process, we have achieved device efficiencies for organic photovoltaics (OPVs) with screen-printed silver electrodes comparable to those with silver electrodes fabricated by thermal evaporation. Furthermore, we developed a method to cure the silver ink using near-infrared (NIR) annealing, significantly reducing the curing time from 30 min with hot air annealing to just 5 s. Additionally, by employing sheet-to-sheet (S2S) slot-die coating, we scaled up the device area and completed module development, successfully verifying stability in ambient air. We have also extended the application of screen-printed silver electrodes to perovskite solar cells (PSCs).
ISSN:2073-4360
2073-4360
DOI:10.3390/polym16213012