Measured and Simulated Temperature Dependence of A-Si:H Solar Cell Parameters

Author:

Stiebig H.,Eickhoff Th.,Zimmer J.,Beneking C.,Wagner H.

Abstract

AbstractIn contrast to the successful application of analytic equations to the current-voltage behaviour of crystalline silicon solar cells in the dark and under AM 1.5 illumination, the description of a-Si:H solar cells parameters requires device modelling concepts taking the full set of semiconductor equations into account. This in particular holds for the explanation of the temperature dependence (225-400K) of experimentally determined a-Si:H p-i-n solar cell parameters. Device modelling calculations show that the observed decrease of the short circuit current at AM 1.5 with lower T is much more effected by the additional charge trapped in the tail states and recharging of defect states than by the broadening of the gap. The induced electric field distortion blocks the extraction of photo generated holes. The open circuit voltage Voc increases with lower T which is caused by the same trapping effect.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference6 articles.

1. 5. Stiebig H. , Kreisel A. , Winz K. , Schultz N. , Beneking C. , Eickhoff Th. , Wagner H. , Meer M. , in Proc. 1st World Conference on Photovoltaic Energy Conversion, (1994), pp. 603–606.

2. 1. Eickhoff Th. , Ulrichs C. , Stiebig H. , Grüinen W. , Reetz W. , Wagner H. , in Proc. 1st World Conference on Photovoltaic Energy Conversion, (1994), pp. 622–625.

3. Electronic Transport in Hydrogenated Amorphous Semiconductors

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