We characterized SnO2:F/p-type a-Si:H heterojunctions by current-voltage (I-V) and capacitance-voltage (C-V) measurements at room temperature to determine the junction parameters. Samples with circular geometry and different diameters were characterized. The current scales with the junction area, and the current density J as a function of the voltage V is a slightly asymmetric curve with a super-linear behaviour (cubic law) for high voltages. Using a transmission line model valid for devices with circular geometry, we studied the effects of the SnO2:F resistivity on the measured capacitance when the SnO2:F layer works as an electrical contact. The measured C-V curve allows us to determine junction parameters as doping of p-type a-Si:H, built-in potential and depletion width for the heterojunction with the smallest diameters, demonstrating that for these samples the TCO effects can be neglected. We compared theoretical and measured data to explain qualitatively the transport mechanism in this heterojunction.

Cannella, G., Principato, F., Foti, M., Garozzo, C., Lombardo, S. (2011). Capacitance study of thin film SnO2:F/p-type a-Si:H heterojunctions. In Energia Procedia, 3 (2011), 51-57 (pp.51-57). Elsevier Ltd [10.1016/j.egypro.2011.01.009].

Capacitance study of thin film SnO2:F/p-type a-Si:H heterojunctions

CANNELLA, Giuseppe;PRINCIPATO, Fabio;
2011-01-01

Abstract

We characterized SnO2:F/p-type a-Si:H heterojunctions by current-voltage (I-V) and capacitance-voltage (C-V) measurements at room temperature to determine the junction parameters. Samples with circular geometry and different diameters were characterized. The current scales with the junction area, and the current density J as a function of the voltage V is a slightly asymmetric curve with a super-linear behaviour (cubic law) for high voltages. Using a transmission line model valid for devices with circular geometry, we studied the effects of the SnO2:F resistivity on the measured capacitance when the SnO2:F layer works as an electrical contact. The measured C-V curve allows us to determine junction parameters as doping of p-type a-Si:H, built-in potential and depletion width for the heterojunction with the smallest diameters, demonstrating that for these samples the TCO effects can be neglected. We compared theoretical and measured data to explain qualitatively the transport mechanism in this heterojunction.
Settore FIS/03 - Fisica Della Materia
13-set-2010
E-MRS FALL MEETING 2010; Symposium C: Materials, devices and economics issues for tomorrow’s photovoltaics
Varsavia
September 13-17, 2010
2011
7
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Cannella, G., Principato, F., Foti, M., Garozzo, C., Lombardo, S. (2011). Capacitance study of thin film SnO2:F/p-type a-Si:H heterojunctions. In Energia Procedia, 3 (2011), 51-57 (pp.51-57). Elsevier Ltd [10.1016/j.egypro.2011.01.009].
Proceedings (atti dei congressi)
Cannella,G; Principato,F; Foti,M; Garozzo,C; Lombardo,S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/53106
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