Vertically aligned ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires: from synthesis to optical properties
Dense and vertically aligned ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were synthesized in large scale on a-plane sapphire substrates by a simple two-step chemical vapor deposition method. The synthesized ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were connected through their base by a thick un...
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creator | Zhong, Miao Li, Yanbo Tokizono, Takero Zheng, Maojun Yamada, Ichiro Delaunay, Jean-jacques |
description | Dense and vertically aligned ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were synthesized in large scale on a-plane sapphire substrates by a simple two-step chemical vapor deposition method. The synthesized ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were connected through their base by a thick underlayer of the same material realizing electrical contact of the nanostructured array. X-ray diffraction and transmission electron microscopy analyses of the core-shell nanowires reveal that the ZnO cores and ZnGa^sub 2^O^sub 4^ shells of the core-shell nanowires are of single-crystal quality and have aligned crystallographic orientations. The ultraviolet-visible diffuse reflectance spectra of the core-shell nanowires showed two sharp edges corresponding to near-band-edge absorption contributed by the ZnO cores and the ZnGa^sub 2^O^sub 4^ shells. Moreover, the room-temperature photoluminescence spectra of the core-shell nanowires gave three UV emission peaks coming from the ZnGa^sub 2^O^sub 4^ shells and the ZnO cores. The dense and vertically aligned ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires showing promising photoelectric properties offer an ideal structure for light harvesting applications such as a photoanode in a photoelectrochemical water splitting cell.[PUBLICATION ABSTRACT] |
doi_str_mv | 10.1007/s11051-012-0804-x |
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The synthesized ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were connected through their base by a thick underlayer of the same material realizing electrical contact of the nanostructured array. X-ray diffraction and transmission electron microscopy analyses of the core-shell nanowires reveal that the ZnO cores and ZnGa^sub 2^O^sub 4^ shells of the core-shell nanowires are of single-crystal quality and have aligned crystallographic orientations. The ultraviolet-visible diffuse reflectance spectra of the core-shell nanowires showed two sharp edges corresponding to near-band-edge absorption contributed by the ZnO cores and the ZnGa^sub 2^O^sub 4^ shells. Moreover, the room-temperature photoluminescence spectra of the core-shell nanowires gave three UV emission peaks coming from the ZnGa^sub 2^O^sub 4^ shells and the ZnO cores. 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The synthesized ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires were connected through their base by a thick underlayer of the same material realizing electrical contact of the nanostructured array. X-ray diffraction and transmission electron microscopy analyses of the core-shell nanowires reveal that the ZnO cores and ZnGa^sub 2^O^sub 4^ shells of the core-shell nanowires are of single-crystal quality and have aligned crystallographic orientations. The ultraviolet-visible diffuse reflectance spectra of the core-shell nanowires showed two sharp edges corresponding to near-band-edge absorption contributed by the ZnO cores and the ZnGa^sub 2^O^sub 4^ shells. Moreover, the room-temperature photoluminescence spectra of the core-shell nanowires gave three UV emission peaks coming from the ZnGa^sub 2^O^sub 4^ shells and the ZnO cores. 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title | Vertically aligned ZnO-ZnGa^sub 2^O^sub 4^ core-shell nanowires: from synthesis to optical properties |
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