Highly transparent and conducting graphene-embedded ZnO films with enhanced photoluminescence fabricated by aerosol synthesis

Graphene/inorganic hybrid structures have attracted increasing attention in research aimed at producing advanced optoelectronic devices and sensors. Herein, we report on aerosol synthesis of new graphene-embedded zinc oxide (ZnO) films with higher optical transparency (>80% at visible wavelengths...

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Veröffentlicht in:Nanotechnology 2014-02, Vol.25 (8), p.085701-085701
Hauptverfasser: Kwon, Bob Jin, Kim, Jong-Young, Choi, Soon-Mok, An, Sung Jin
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Sprache:eng
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Zusammenfassung:Graphene/inorganic hybrid structures have attracted increasing attention in research aimed at producing advanced optoelectronic devices and sensors. Herein, we report on aerosol synthesis of new graphene-embedded zinc oxide (ZnO) films with higher optical transparency (>80% at visible wavelengths), improved electrical conductivity (>2 orders of magnitude, 20 kΩ ), and enhanced photoluminescence ( 3 times), as compared to bare ZnO film. The ZnO/graphene composite films, in which reduced graphene oxide nanoplatelets ( 4 nm thick) are embedded in nanograined ZnO ( 50 nm in grain size), were fabricated from colloidal suspensions of graphene oxide with an aqueous zinc precursor. These new luminescent ZnO/graphene composites, with high optical transparency and improved electrical conductivity, are promising materials for use in optoelectronic devices.
ISSN:0957-4484
1361-6528
DOI:10.1088/0957-4484/25/8/085701