Performance enhancement of organic/Si solar cell using CNT embedded hole selective layer

[Display omitted] •PEDOT: PSS-CNT composite prepared by a facile method used as HSL in c-Si solar cell.•The device performance was found to vary with the CNT wt.% in the composite film.•The junction properties were analysed using EIS measurements.•PEDOT: PSS-CNT /Si solar cell obtained an efficiency...

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Veröffentlicht in:Solar energy 2020-11, Vol.211, p.158-166
Hauptverfasser: Markose, Kurias K., Jasna, M., Subha, P.P., Antony, Aldrin, Jayaraj, M.K.
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Sprache:eng
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Zusammenfassung:[Display omitted] •PEDOT: PSS-CNT composite prepared by a facile method used as HSL in c-Si solar cell.•The device performance was found to vary with the CNT wt.% in the composite film.•The junction properties were analysed using EIS measurements.•PEDOT: PSS-CNT /Si solar cell obtained an efficiency of 9.05% with a Voc of 588.6 mV. In this work, we present a simple and solution-based synthesis approach to combine the virtues of PEDOT:PSS and carbon nanotube (CNT) by developing a composite film and their application as a hole selective layer (HSL) in organic-silicon hybrid heterojunction solar cell. The heterojunction solar cell with the optimised PEDOT: PSS-CNT HSL showed a notable open-circuit voltage (Voc) of 588.6 mV, short circuit current density (Jsc) of 25.3 mA/cm2 and fill factor (FF) of 60.79% yielding a photo-conversion efficiency (η) of 9.05%. The pristine PEDOT:PSS/Si device obtained an η of 6.2% with a Voc of 502 mV. The role of CNT in the charge transport mechanism and improving Voc was corroborated by employing various characterisation methods such as J-V, C-V, and electrochemical impedance spectroscopy. The composite layer induced a strong inversion layer in silicon and enhanced the device performance. The application of PEDOT:PSS-CNT composite film is not limited to c-Si solar cells, but can also be used to fabricate flexible organic and perovskite solar cells.
ISSN:0038-092X
1471-1257
DOI:10.1016/j.solener.2020.09.024