Probing temperature-dependent recombination kinetics in polymer: Fullerene solar cells by electric noise spectroscopy

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Abstract

The influence of solvent additives on the temperature behavior of both charge carrier transport and recombination kinetics in bulk heterojunction solar cells has been investigated by electric noise spectroscopy. The observed differences in charge carrier lifetime and mobility are attributed to a different film ordering and donor-acceptor phase segregation in the blend. The measured temperature dependence indicates that bimolecular recombination is the dominant loss mechanism in the active layer, affecting the device performance. Blend devices prepared with a high-boiling-point solvent additive show a decreased recombination rate at the donor-acceptor interface as compared to the ones prepared with the reference solvent. A clear correlation between the device performance and the morphological properties is discussed in terms of the temperature dependence of the mobility-lifetime product.

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Landi, G., Barone, C., Mauro, C., De Sio, A., Carapella, G., Neitzert, H. C., & Pagano, S. (2017). Probing temperature-dependent recombination kinetics in polymer: Fullerene solar cells by electric noise spectroscopy. Energies, 10(10). https://doi.org/10.3390/en10101490

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