TY - JOUR
T1 - Injection and transport of high current density over 1000 A/cm2 in organic light emitting diodes under pulse excitation
AU - Nakanotani, Hajime
AU - Oyamada, Takahito
AU - Kawamura, Yuichiro
AU - Sasabe, Hiroyuki
AU - Adachi, Chihaya
PY - 2005/6
Y1 - 2005/6
N2 - We succeeded in injecting and transporting a maximum high current density of J = 1163 A/cm2 in organic light-emitting diodes using short-pulse excitation combined with a highly thermally conductive silicon substrate (thermal conductivity: 148Wm-1 K-1) and a small cathode configuration (cathode radius r = 50 μm). A maximum current density almost 20 times higher than that associated with direct current (DC) operation was observed by driving an OLED with a short pulse voltage. With short-pulse excitation, the decrease in external quantum efficiency (ηext) obeyed a typical singlet-singlet exciton annihilation model well, indicating that the generation of Joule heat in OLEDs can be suppressed under pulse operation.
AB - We succeeded in injecting and transporting a maximum high current density of J = 1163 A/cm2 in organic light-emitting diodes using short-pulse excitation combined with a highly thermally conductive silicon substrate (thermal conductivity: 148Wm-1 K-1) and a small cathode configuration (cathode radius r = 50 μm). A maximum current density almost 20 times higher than that associated with direct current (DC) operation was observed by driving an OLED with a short pulse voltage. With short-pulse excitation, the decrease in external quantum efficiency (ηext) obeyed a typical singlet-singlet exciton annihilation model well, indicating that the generation of Joule heat in OLEDs can be suppressed under pulse operation.
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U2 - 10.1143/JJAP.44.3659
DO - 10.1143/JJAP.44.3659
M3 - Article
AN - SCOPUS:23944460494
SN - 0021-4922
VL - 44
SP - 3659
EP - 3662
JO - Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers
JF - Japanese Journal of Applied Physics, Part 1: Regular Papers and Short Notes and Review Papers
IS - 6 A
ER -