Completely TCO-Free and Flexible Dye-Sensitized Solar Cells Fabricated on Plastic Substrates
Min Jae Ko a, Inyoung Jeong a, Jae-Yup Kim a, Kicheon Yoo a
a 1Photo-Electronic Hybrids Research Center, Korea Institute of Science and Technology,, Seoul 136-791
International Conference on Hybrid and Organic Photovoltaics
Proceedings of International Conference on Hybrid and Organic Photovoltaics 2015 (HOPV15)
Roma, Italy, 2015 May 11th - 13th
Organizer: Filippo De Angelis
Poster, Inyoung Jeong, 452
Publication date: 5th February 2015
To achieve commercialization and wide-spread application of next-generation photovoltaics, it is important to develop flexible and cost effective devices. Given this, the elimination of expensive transparent conducting oxides (TCO) and replacement of conventional glass substrates with flexible plastic substrates presents a viable strategy to realize extremely low-cost photovoltaics with a potentially wide applicability. To this end, we report a completely TCO-free and flexible dye-sensitized solar cell (DSSC) fabricated on a plastic substrate using a unique transfer method and back-contact architecture. By adopting unique transfer techniques, the working and counter electrodes were fabricated by transferring high-temperature-annealed TiO2 and Pt/carbon films, respectively, onto flexible plastic substrates without any exfoliation. The fabricated working electrode with the conventional counter electrode exhibited a record efficiency for flexible DSSCs of 8.10%, despite its TCO-free structure. In addition, the completely TCO-free and flexible DSSC exhibited a remarkable efficiency of 7.27%. Furthermore, by using an organic hole-transporting material (spiro-MeOTAD) with the same transfer method, solid-state flexible TCO-free DSSCs were also successfully fabricated, yielding a promising efficiency of 3.36%.

1. K.C. Yoo, J.-Y. Kim, M.J.Ko* et al, ACS Nano, 10.1021/acsnano.5b01346
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