Accessing the band alignment in high efficiency Cu(In,Ga)(Se,S)2 (CIGSSe) solar cells with an InxSy:Na buffer based on temperature dependent measurements and simulations
Author:
Affiliation:
1. Laboratory for Chalcogenide Photovoltaics, Department of Energy and Semiconductor Research, Institute of Physics, University of Oldenburg, D-26111 Oldenburg, Germany
2. AVANCIS GmbH, Otto-Hahn-Ring 6, 81739 Munich, Germany
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.5017087
Reference43 articles.
1. Solar cell efficiency tables (version 50)
2. Impact of varied sulfur incorporation on the device performance of sequentially processed Cu(In,Ga)(Se,S)2 thin film solar cells
3. Innovation highway: Breakthrough milestones and key developments in chalcopyrite photovoltaics from a retrospective viewpoint
4. Comprehensive simulation model for Cu(In,Ga)(Se,S)2 solar cells
5. Simulation study of the impact of interface roughness and void inclusions on Cu(In,Ga)(Se,S)2 solar cells
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1. Impact of Na diffusion on Cu(In, Ga)Se2 solar cells: Unveiling the role of active defects using thermal admittance spectroscopy;Thin Solid Films;2023-02
2. Investigating the origin of the N1 signature in admittance spectroscopy of Cu(In,Ga)(S,Se)2 thin-film solar cells by a variation of individual cell layers;Thin Solid Films;2022-10
3. Measurement of shunt resistance and conduction band offset in Cu(In, Ga)Se2 solar cells through joint analysis of temperature and intensity dependence of open-circuit voltage and photoluminescence;Japanese Journal of Applied Physics;2020-05-01
4. Measurement of band offsets and shunt resistance in CdTe solar cells through temperature and intensity dependence of open circuit voltage and photoluminescence;Solar Energy;2019-09
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