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Article Dans Une Revue Key Engineering Materials Année : 2014

Band-Gap Engineering Based on Ti@ZnO Nanocolloids: Tunable Optical Properties

Chrystelle Neaime
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  • PersonId : 770125
  • IdRef : 191474517
Fabien Grasset
Tangi Aubert

Résumé

One of the largest application areas of sol-gel chemistry is thin-film preparation. Using this approach, we started to synthesize M@ZnO colloidal solutions for the preparation of functional thin films. ZnO is a wide band-gap (3.37 eV) semiconductor with large exciton binding energy. In the 'bulk' or in 'nanosized' form, it could be used in a wide range of applications such as UV light emitters, spin functional devices, gas sensors, transparent electronics or surface acoustic wave devices. Since recently, the preparation of innovative functional M@ZnO materials by doping or functionalizing nanocolloids constitutes a new challenge. Using high concentrations of the different Ti@ZnO nanocolloids, we were able to prepare various functional colloidal solutions with tunable emission and thin films, such as red-luminescent Eu3+@ZnTiO3 or versatile ZnTiON colored nanomaterials.
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Dates et versions

hal-01069256 , version 1 (29-09-2014)

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Chrystelle Neaime, Fabien Grasset, Tangi Aubert. Band-Gap Engineering Based on Ti@ZnO Nanocolloids: Tunable Optical Properties. Key Engineering Materials, 2014, 617, pp.161-165. ⟨10.4028/www.scientific.net/KEM.617.161⟩. ⟨hal-01069256⟩
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