The quantum efficiency enhancement in nanocrystal solids is critically important for their efficient use as luminophors on color-conversion light emitting diodes (LEDs). For this purpose, we investigate energy gradient mixture of nanocrystal solids for recycling their trapped excitons by varying their donor-acceptor nanocrystal ratios and study the resulting quantum efficiency enhancement as a function of the donor-acceptor ratio in the solid film for hybrid LEDs. We achieve a maximum quantum efficiency enhancement of 17% in these nanocrystal solids when the donor-acceptor ratio is 1:1, demonstrating their highly modified time-resolved photoluminescence decays to reveal the kinetics of strong energy transfer between them. © 2009 American In...
Photon upconversion is the process where two low energy photons combine to form one higher energy ph...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
There has been a tremendous amount of interest in developing high-efficiency light-emitting diodes (...
Cataloged from PDF version of article.The quantum efficiency enhancement in nanocrystal solids is cr...
We propose and demonstrate hybrid white light emitting diodes enhanced with resonant nonradiative en...
We investigate quantum efficiency (QE) enhancement via recycling of trapped excitons in energy-gradi...
In this paper, for their use as nanoluminophors on color-conversion white light emitting diodes (LED...
Near-infrared light-emitting diodes (LEDs) show potential for telecommunication and medical applicat...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Efficient nonradiative energy transfer is observed from nanopillars of InGaN/GaN quantum wells to co...
Efficient nonradiative energy transfer is observed from nanopillars of InGaN/GaN quantum wells to co...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.In this paper, we present Forster resonance energy transfer (F...
nanocrystals detected by energy transfer to organic dye molecules Jun Xiao1,*, Ying Wang1,*, Zheng H...
Photon upconversion is the process where two low energy photons combine to form one higher energy ph...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
There has been a tremendous amount of interest in developing high-efficiency light-emitting diodes (...
Cataloged from PDF version of article.The quantum efficiency enhancement in nanocrystal solids is cr...
We propose and demonstrate hybrid white light emitting diodes enhanced with resonant nonradiative en...
We investigate quantum efficiency (QE) enhancement via recycling of trapped excitons in energy-gradi...
In this paper, for their use as nanoluminophors on color-conversion white light emitting diodes (LED...
Near-infrared light-emitting diodes (LEDs) show potential for telecommunication and medical applicat...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Efficient nonradiative energy transfer is observed from nanopillars of InGaN/GaN quantum wells to co...
Efficient nonradiative energy transfer is observed from nanopillars of InGaN/GaN quantum wells to co...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
This study develops and shows highly efficient exciton-transferring hybrid semiconductor nanocrystal...
Cataloged from PDF version of article.In this paper, we present Forster resonance energy transfer (F...
nanocrystals detected by energy transfer to organic dye molecules Jun Xiao1,*, Ying Wang1,*, Zheng H...
Photon upconversion is the process where two low energy photons combine to form one higher energy ph...
Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for di...
There has been a tremendous amount of interest in developing high-efficiency light-emitting diodes (...