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Optical Properties of Lanthanide-Doped Lamellar Nanohybrids

✍ Scribed by Rute A. Sá Ferreira; Mohamed Karmaoui; Sónia S. Nobre; Luís D. Carlos; Nicola Pinna


Book ID
102121636
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
292 KB
Volume
7
Category
Article
ISSN
1439-4235

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✦ Synopsis


Abstract

In this article a detailed study of the optical properties of lanthanide doped lamellar nanohybrids synthesized by the “benzyl alcohol route” is presented. The synthetic approach results in the formation of a highly ordered lamellar nanocomposite consisting of yttrium or gadolinium oxide crystalline layers with a confined thickness of about 0.6 nm, separated from each other by organic layers of intercalated benzoate molecules. When the inorganic layers are doped with optically‐active lanthanide ions they show outstanding emission properties in the green (Tb^3+^), red (Eu^3+^) and near infrared (Nd^3+^). The local environment of the emitting ions and the energy transfer processes involving the phenyl ring of the benzoate complexes and the lanthanide ions are presented, as well as radiance and lifetime measurements. The radiance values are comparable and in some cases even larger than those of standard phosphors, proving that these nanohybrids can compete, from an emission efficiency point of view, with commercial phosphors. Furthermore, in these nanohybrids it is possible by simply changing the excitation wavelength, to tune the emission colour chromaticity without loosing the radiance.


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