Sodium-doped molybdenum targets for controllable sodium incorporation in CIGS solar cells

The efficiency of Cu(In, Ga)Se 2 (CIGS) solar cells is enhanced when Na is incorporated in the CIGS absorber layer. This work examines Na incorporation in CIGS utilizing Na-doped Mo sputtered from targets made with sodium molybdate-doped (MONA) powder. Mo:Na films with varying thicknesses were sputt...

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Hauptverfasser: Mansfield, L. M., Repins, I. L., Glynn, S., Carducci, M. D., Honecker, D. M., Pankow, J. W., Young, M. R., DeHart, C., Sundaramoorthy, R., Beall, C. L., To, B.
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Sprache:eng
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Zusammenfassung:The efficiency of Cu(In, Ga)Se 2 (CIGS) solar cells is enhanced when Na is incorporated in the CIGS absorber layer. This work examines Na incorporation in CIGS utilizing Na-doped Mo sputtered from targets made with sodium molybdate-doped (MONA) powder. Mo:Na films with varying thicknesses were sputtered onto Mo-coated borosilicate glass (BSG) or stainless steel substrates for CIGS solar cells. By use of this technique, the Na content of CIGS can be varied from near-zero to higher than that obtained from a soda-lime glass (SLG) substrate. Targets and deposition conditions are described. The doped Mo films are analyzed, and the resulting devices are compared to devices fabricated on Mo-coated SLG as well as Mo-coated BSG with NaF. Completed devices utilizing MONA exceeded 15.7% efficiency without anti-reflective coating, which was consistently higher than devices prepared with the NaF precursor. Strategies for minimizing adhesion difficulties are presented.
ISSN:0160-8371
DOI:10.1109/PVSC.2011.6185937