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Improving Optical Transmission of Indium Tin Oxide (ITO) thin films prepared by Femtosecond Laser ablation

Abstract
Indium-tin-oxide (ITO) thin films have been grown by ultrafast femtosecond laser ablation technique.The films prepared at different deposition temperature (24 to 400 °C) then annealed at 400 o C for 1h under vacuum.The structural, optical, and electrical properties of ITO films were studied as a function of the substrate deposition temperature and compared to the annealed films.The increase in the...
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Keywords
Indium tin oxide
Materials science
Femtosecond
Laser ablation
Optoelectronics
Thin film
Indium
Laser
Transmission (telecommunications)
Optics
Nanotechnology
Telecommunications
Computer science
Physics
Sustainable Development Goals (SDG)
Affordable and clean energy

2011
Article

Open Access


pdf file

Improving Optical Transmission of Indium Tin Oxide (ITO) thin films prepared by Femtosecond Laser ablation
pdf file

Improving Optical Transmission of Indium Tin Oxide (ITO) thin films prepared by Femtosecond Laser ablation

Abstract
Indium-tin-oxide (ITO) thin films have been grown by ultrafast femtosecond laser ablation technique.The films prepared at different deposition temperature (24 to 400 °C) then annealed at 400 o C for 1h under vacuum.The structural, optical, and electrical properties of ITO films were studied as a function of the substrate deposition temperature and compared to the annealed films.The increase in the...
View PDF
Keywords
Indium tin oxide
Materials science
Femtosecond
Laser ablation
Optoelectronics
Thin film
Indium
Laser
Transmission (telecommunications)
Optics
Nanotechnology
Telecommunications
Computer science
Physics
Sustainable Development Goals (SDG)
Affordable and clean energy

2011
Article

Open Access


pdf file