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Thermally-restorable optical degradation and the mechanism of current transport in Cu2S-CdS photovoltaic cellsThe photovoltaic properties of single-crystal Cu2S-CdS heterojunctions have been investigated as a function of heat treatment by detailed measurements of the dependence of short-circuit current on photon energy, temperature, and the state of optical degradation or enhancement. A coherent picture is formulated for the relationship between enhancement and optical degradation, and their effect on the transport of short-circuit photoexcited current and dark, forward-bias current in the cell. Optical degradation in the Cu2S-CdS cell is shown to be closely identical to optical degradation of lifetime in a homogeneous CdS:Cd:Cu crystal, indicating that the CdS:Cu layer near the junction interface controls carrier transport in the cell. It is proposed that both the photoexcited short-circuit current and the dark, forward-bias current are controlled by a tunneling-recombination process through interface states.
Document ID
19740051631
Acquisition Source
Legacy CDMS
Document Type
Conference Proceedings
Authors
Fahrenbruch, A. L.
Bube, R. H.
(Stanford University Stanford, Calif., United States)
Date Acquired
August 7, 2013
Publication Date
January 1, 1974
Subject Category
Auxiliary Systems
Meeting Information
Meeting: Photovoltaic Specialists Conference
Location: Palo Alto, CA
Start Date: November 13, 1973
End Date: November 15, 1973
Sponsors: Institute of Electrical and electronics Engineers
Accession Number
74A34381
Distribution Limits
Public
Copyright
Other

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