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A spectrally tunable all-graphene-based flexible field-effect light-emitting device.


ABSTRACT: The continuous tuning of the emission spectrum of a single light-emitting diode (LED) by an external electrical bias is of great technological significance as a crucial property in high-quality displays, yet this capability has not been demonstrated in existing LEDs. Graphene, a tunable optical platform, is a promising medium to achieve this goal. Here we demonstrate a bright spectrally tunable electroluminescence from blue (?450?nm) to red (?750?nm) at the graphene oxide/reduced-graphene oxide interface. We explain the electroluminescence results from the recombination of Poole-Frenkel emission ionized electrons at the localized energy levels arising from semi-reduced graphene oxide, and holes from the top of the ? band. Tuning of the emission wavelength is achieved by gate modulation of the participating localized energy levels. Our demonstration of current-driven tunable LEDs not only represents a method for emission wavelength tuning but also may find applications in high-quality displays.

SUBMITTER: Wang X 

PROVIDER: S-EPMC4518298 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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A spectrally tunable all-graphene-based flexible field-effect light-emitting device.

Wang Xiaomu X   Tian He H   Mohammad Mohammad Ali MA   Li Cheng C   Wu Can C   Yang Yi Y   Ren Tian-Ling TL  

Nature communications 20150716


The continuous tuning of the emission spectrum of a single light-emitting diode (LED) by an external electrical bias is of great technological significance as a crucial property in high-quality displays, yet this capability has not been demonstrated in existing LEDs. Graphene, a tunable optical platform, is a promising medium to achieve this goal. Here we demonstrate a bright spectrally tunable electroluminescence from blue (∼450 nm) to red (∼750 nm) at the graphene oxide/reduced-graphene oxide  ...[more]

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