We report the design, fabrication, and characterization of high-performance, solution-processed hybrid (inorganic-organic) light emitting transistors (HLETs). The devices employ a high-mobility, solution-processed cadmium sulfide layer as the switching and transport layer, with a conjugated polymer Super Yellow as an emissive material in non-planar source/drain transistor geometry. We demonstrate HLETs with electron mobilities of up to 19.5 cm2/V s, current on/off ratios of >107, and external quantum efficiency of 10-2% at 2100 cd/m2. These combined optical and electrical performance exceed those reported to date for HLETs. Furthermore, we provide full analysis of charge injection, charge transport, and recombination mechanism of the HLE...
Hybrid organic/inorganic light-emitting diodes (HyLEDs) combine thin, metal oxide layers together wi...
Development of a new class of luminescent materials that show high‐speed response, high charge carri...
Thesis (Ph.D.)--University of Washington, 2014Organic electronics, commonly referred as plastic elec...
We report the design, fabrication, and characterization of high-performance, solution-processed hybr...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of highly efficient and stable solution-processed organic light emitting ...
International audienceLow optical turn-on voltage is realized in a solution processed hybrid light e...
We report on the mechanism of enhancing the luminance and external quantum efficiency (EQE) by devel...
Organic light emitting field effect transistors (OLEFETs) with bilayer structures have been widely s...
Organic light emitting transistors (LEFETs) are an emerging class of light emitting devices that hav...
iv ABSTRACT This research work aims at improving the device efficiency of solution processed OLED ...
Area emission is realized in all-solution-processed hybrid light-emitting transistors (HLETs). A new...
Development of a new class of luminescent materials that show high-speed response, high charge carri...
Hybrid organic/inorganic light-emitting diodes (HyLEDs) combine thin, metal oxide layers together wi...
Development of a new class of luminescent materials that show high‐speed response, high charge carri...
Thesis (Ph.D.)--University of Washington, 2014Organic electronics, commonly referred as plastic elec...
We report the design, fabrication, and characterization of high-performance, solution-processed hybr...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of low operating voltages in inorganic–organic hybrid light-emitting trans...
We report the development of highly efficient and stable solution-processed organic light emitting ...
International audienceLow optical turn-on voltage is realized in a solution processed hybrid light e...
We report on the mechanism of enhancing the luminance and external quantum efficiency (EQE) by devel...
Organic light emitting field effect transistors (OLEFETs) with bilayer structures have been widely s...
Organic light emitting transistors (LEFETs) are an emerging class of light emitting devices that hav...
iv ABSTRACT This research work aims at improving the device efficiency of solution processed OLED ...
Area emission is realized in all-solution-processed hybrid light-emitting transistors (HLETs). A new...
Development of a new class of luminescent materials that show high-speed response, high charge carri...
Hybrid organic/inorganic light-emitting diodes (HyLEDs) combine thin, metal oxide layers together wi...
Development of a new class of luminescent materials that show high‐speed response, high charge carri...
Thesis (Ph.D.)--University of Washington, 2014Organic electronics, commonly referred as plastic elec...