Photovoltaic properties in interpenetrating heterojunction organic solar cells utilizing MoO3 and ZnO charge transport buffer layers

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Abstract

Organic thin-film solar cells with a conducting polymer (CP)/fullerene (C60) interpenetrating heterojunction structure, fabricated by spin-coating a CP onto a C60 deposit thin film, have been investigated and demonstrated to have high efficiency. The photovoltaic properties of solar cells with a structure of indium-tin-oxide/C60/ poly(3-hexylthiophene) (PAT6)/Au have been improved by the insertion of molybdenum trioxide (VI) (MoO3) and zinc oxide charge transport buffer layers. The enhanced photovoltaic properties have been discussed, taking into consideration the ground-state charge transfer between PAT6 and MoO3 by measurement of the differential absorption spectra and the suppressed contact resistance at the interface between the organic and buffer layers.© 2010 by the authors.

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Hori, T., Moritou, H., Fukuoka, N., Sakamoto, J., Fujii, A., & Ozaki, M. (2010). Photovoltaic properties in interpenetrating heterojunction organic solar cells utilizing MoO3 and ZnO charge transport buffer layers. Materials, 3(11), 4915–4921. https://doi.org/10.3390/ma3114915

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