|
Volumn 479, Issue 1-2, 2009, Pages 520-524
|
Enhancement of hole-injection and power efficiency of organic light emitting devices using an ultra-thin ZnO buffer layer
|
Author keywords
Hole injection; OLED; X ray and ultra violet photoelectron spectroscopies; ZnO
|
Indexed keywords
ANODE BUFFER LAYERS;
ELECTRO-OPTICAL PROPERTIES;
HOLE-INJECTION;
HOLE-TRANSPORTING LAYERS;
INDIUM TIN OXIDES;
ITO FILMS;
OLED;
ORGANIC LIGHT-EMITTING DEVICES;
OZONE EXPOSURES;
POWER EFFICIENCIES;
TURN-ON VOLTAGES;
ULTRA VIOLETS;
UV OZONES;
UV-OZONE TREATMENTS;
X-RAY AND ULTRA-VIOLET PHOTOELECTRON SPECTROSCOPIES;
XPS;
ZNO;
ZNO BUFFER LAYERS;
ZNO LAYERS;
ZNO POWDERS;
AMINES;
BUFFER LAYERS;
HELMET MOUNTED DISPLAYS;
HOLE TRAPS;
LIGHT EMISSION;
OPTICAL PROPERTIES;
ORGANIC LIGHT EMITTING DIODES (OLED);
OZONE;
OZONE LAYER;
PHOTOELECTRICITY;
PHOTOELECTRON SPECTROSCOPY;
PHOTOIONIZATION;
PHOTONS;
POWER SUPPLY CIRCUITS;
SEMICONDUCTING ZINC COMPOUNDS;
SINGLE CRYSTAL SURFACES;
SPECTRUM ANALYSIS;
TIN;
TITANIUM COMPOUNDS;
ZINC OXIDE;
X RAY PHOTOELECTRON SPECTROSCOPY;
|
EID: 67349250492
PISSN: 09258388
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jallcom.2008.12.122 Document Type: Article |
Times cited : (49)
|
References (29)
|