We report on the vertically stacked color tunable light-emitting diodes (LEDs) fabricated using wafer bonding with an indium tin oxide (ITO) layer and transfer printing by the laser lift-off process. Employing optically transparent and electrically conductive ITO as an adhesion layer enables to bond the GaN-based blue and AlGaInP-based yellow LEDs. We find out that the interdiffusion of In, O, and Ga at the interface between ITO and GaP allows the strong bonding of the heterogeneous optoelectronic materials and the integration of two different color LEDs on a single substrate. The efficacy of this method is demonstrated by showing the successful control of color coordinate from the vertically stacked LEDs by modulating the individual intens...
Solid state lighting is a good alternative light source with reduced energy consumption. Light-emitt...
Independently controllable stacked organic light emitting devices (OLEDs) are fabricated by using in...
Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the ...
This journal suppl. entitled: Supplement: International Workshop on Nitride Semiconductors (IWN 2008...
[[abstract]]Indium-tin oxide (ITO) used as the window layer and current-spreading layer for wafer-bo...
A novel design and method for assembling a tri-color light-emitting diode (LED) device is proposed a...
This study investigated the variance of color chromaticity of a vertically-stacked LEDs device with ...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
We demonstrate an integrated dual-color InGaN light-emitting diode (LED) array by transfer printing ...
In recent years, research into implementing microdisplays for use in virtual reality and augmented r...
We report the transfer printing of blue-emitting micron-scale light-emitting diodes (micro-LEDs) ont...
We fabricated transferable thin-film gallium nitride (GaN) light-emitting diodes (LEDs) via laser li...
We have developed methods for creating microscale inorganic light-emitting diodes (LEDs) and for ass...
Integrated multi-color devices for visible light communication applications are fabricated by transf...
The irreversible trend of replacing the conventional incandescence light bulbs and fluorescent tubes...
Solid state lighting is a good alternative light source with reduced energy consumption. Light-emitt...
Independently controllable stacked organic light emitting devices (OLEDs) are fabricated by using in...
Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the ...
This journal suppl. entitled: Supplement: International Workshop on Nitride Semiconductors (IWN 2008...
[[abstract]]Indium-tin oxide (ITO) used as the window layer and current-spreading layer for wafer-bo...
A novel design and method for assembling a tri-color light-emitting diode (LED) device is proposed a...
This study investigated the variance of color chromaticity of a vertically-stacked LEDs device with ...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
We demonstrate an integrated dual-color InGaN light-emitting diode (LED) array by transfer printing ...
In recent years, research into implementing microdisplays for use in virtual reality and augmented r...
We report the transfer printing of blue-emitting micron-scale light-emitting diodes (micro-LEDs) ont...
We fabricated transferable thin-film gallium nitride (GaN) light-emitting diodes (LEDs) via laser li...
We have developed methods for creating microscale inorganic light-emitting diodes (LEDs) and for ass...
Integrated multi-color devices for visible light communication applications are fabricated by transf...
The irreversible trend of replacing the conventional incandescence light bulbs and fluorescent tubes...
Solid state lighting is a good alternative light source with reduced energy consumption. Light-emitt...
Independently controllable stacked organic light emitting devices (OLEDs) are fabricated by using in...
Here, we report multilayer stacking of films of quantum dots (QDs) for the purpose of tailoring the ...