Fluorine-doped zinc oxide transparent and conducting electrode by chemical spray synthesis

Highly transparent and conducting fluorine-doped zinc oxide thin films, consisting of spherical nanometer-sized grains, were synthesized onto soda-lime glass substrate by using a chemical spray unit. The effect of fluorine doping concentration in starting solution was investigated. Both doped and un...

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Veröffentlicht in:Applied surface science 2008-08, Vol.254 (20), p.6294-6297
Hauptverfasser: Pawar, B.N., Ham, Duk-Ho, Mane, R.S., Ganesh, T., Cho, Byung-Won, Han, Sung-Hwan
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Sprache:eng
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Zusammenfassung:Highly transparent and conducting fluorine-doped zinc oxide thin films, consisting of spherical nanometer-sized grains, were synthesized onto soda-lime glass substrate by using a chemical spray unit. The effect of fluorine doping concentration in starting solution was investigated. Both doped and undoped films were preferentially oriented along [002] direction. Electrical resistivity decreases from 5.7 x 10 -2 to 8.6 x 10 -3 ohm-cm after 1 at.% fluorine doping, and increases for higher doping concentration. However, surface morphology of films obtained at 3 at.% fluorine doping appeared smooth and uniform. A shift of the edge of the optical transmission in the ultraviolet region as a result of fluorine doping was obtained.
ISSN:0169-4332
1873-5584
DOI:10.1016/j.apsusc.2008.02.088