Various surface treatments significantly affect the work function and surface roughness of indium tin oxide (ITO), and thusly influence charge injection and overall performance of organic light emitting diodes (OLEDs). Large number of treatments, most commonly oxygen plasma treatment and UV-ozone treatment, have been proposed to improve characteristics of ITO. In this work, we have investigated a) mechanical treatments (mechanical rubbing, followed by ultrasonic bath), b) chemical treatments (dipping into aqueous solutions of various acids, including acids which have not been investigated previously) c) thermal treatments (thermal annealing in different atmospheres) d) plasma treatments e) UV ozone treatment f) different combinations of the...
AbstractWe study the effect of indium tin oxide (ITO) cleaning and hole-injection layer (HIL) insert...
The authors report the enhancement of hole injection using an RhOx layer between indium tin oxide an...
© 2009 American Institute of Physics. The electronic version of this article is the complete one and...
We have systematically investigated the influence of UV ozone and acid (HCl) treatments (separate an...
A commercial, vertical inline deposition tool for mass production of OLEDs (provided by Applied Mate...
In this work, we performed systematic study of the influence of oxidative (ultraviolet (UV) ozone) a...
The effects of O2-plasma treatment on the surface properties of indium-tin-oxide (ITO) anodes and th...
International audienceWettability studies have been performed to probe the surface properties of ITO...
International audienceWe have investigated thin film of Indium Tin Oxide (ITO) deposited on glass su...
grantor: University of TorontoOrganic light emitting diodes (OLEDs) have attracted a wide ...
Surface modification was performed on the indium-tin-oxide (ITO) substrates for organic light-emitt...
The performance of organic solar cells was influenced by different indium tin oxide (ITO) surface tr...
Abstract. The cleanliness of indium tin oxide (ITO) sub-strates used in organic light-emitting diode...
We report on the effects of surface treatment with N2, O2, and N2O plasmas on the work function of i...
Modification of indium tin oxide (ITO) electrode interface for improved hole injection in organic li...
AbstractWe study the effect of indium tin oxide (ITO) cleaning and hole-injection layer (HIL) insert...
The authors report the enhancement of hole injection using an RhOx layer between indium tin oxide an...
© 2009 American Institute of Physics. The electronic version of this article is the complete one and...
We have systematically investigated the influence of UV ozone and acid (HCl) treatments (separate an...
A commercial, vertical inline deposition tool for mass production of OLEDs (provided by Applied Mate...
In this work, we performed systematic study of the influence of oxidative (ultraviolet (UV) ozone) a...
The effects of O2-plasma treatment on the surface properties of indium-tin-oxide (ITO) anodes and th...
International audienceWettability studies have been performed to probe the surface properties of ITO...
International audienceWe have investigated thin film of Indium Tin Oxide (ITO) deposited on glass su...
grantor: University of TorontoOrganic light emitting diodes (OLEDs) have attracted a wide ...
Surface modification was performed on the indium-tin-oxide (ITO) substrates for organic light-emitt...
The performance of organic solar cells was influenced by different indium tin oxide (ITO) surface tr...
Abstract. The cleanliness of indium tin oxide (ITO) sub-strates used in organic light-emitting diode...
We report on the effects of surface treatment with N2, O2, and N2O plasmas on the work function of i...
Modification of indium tin oxide (ITO) electrode interface for improved hole injection in organic li...
AbstractWe study the effect of indium tin oxide (ITO) cleaning and hole-injection layer (HIL) insert...
The authors report the enhancement of hole injection using an RhOx layer between indium tin oxide an...
© 2009 American Institute of Physics. The electronic version of this article is the complete one and...