Development of Combinatorial Pulsed Laser Deposition for Expedited Device Optimization in CdTe/CdS Thin-Film Solar Cells

Author:

Kadhim Ali12,Harrison Paul1,Meeth Jake13,Al-Mebir Alaa12,Zeng Guanggen14,Wu Judy1

Affiliation:

1. Department of Physics and Astronomy, University of Kansas, Lawrence, KS 66046, USA

2. Departments of Physics, College of Science, University of Thi-Qar, Nasiriya, Thi-Qar, Iraq

3. Electrical Engineering Division, Department of Engineering, University of Cambridge, Cambridge CB3 OFA, UK

4. College of Materials Science and Engineering, Sichuan University, Chengdu 610064, China

Abstract

A combinatorial pulsed laser deposition system was developed by integrating a computer controlled scanning sample stage in order to rapidly screen processing conditions relevant to CdTe/CdS thin-film solar cells. Using this system, the thickness of the CdTe absorber layer is varied across a single sample from 1.5 μm to 0.75 μm. The effects of thickness on CdTe grain morphology, crystal orientation, and cell efficiency were investigated with respect to different postprocessing conditions. It is shown that the thinner CdTe layer of 0.75 μm obtained the best power conversion efficiency up to 5.3%. The results of this work shows the importance that CdTe grain size/morphology relative to CdTe thickness has on device performance and quantitatively exhibits what those values should be to obtain efficient thin-film CdTe/CdS solar cells fabricated with pulsed laser deposition. Further development of this combinatorial approach could enable high-throughput exploration and optimization of CdTe/CdS solar cells.

Funder

National Science Foundation

Publisher

Hindawi Limited

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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