Abstract The effect of dopant concentration on the up-conversion emission, and in particular on the Er<sup>3+</sup> related green and red emissions of spray pyrolysis deposited films of Y<inf>2</inf>O<inf>3</inf>:Er<sup>3+</sup> co-doped with Li<sup>+</sup>, is reported. Er<sup>3+</sup> concentrations in the films in the range of 1.1-5.6 at% (1.5-14 at% Er<sup>3+</sup> in the spraying solution) were studied, as well as the effect of co-doping them with Li<sup>+</sup>. Large concentrations of Er<sup>3+</sup> favor the red emission, especially for contents higher than 10 at% in the spraying solution. Li<sup>+</sup> co-doping improves the green and red emissions up to 365 and 171 times, respectively, depending on the Er<sup>3+</sup> and Li<sup>+</sup> concentrations.

Dependence of the up-conversion emission of Li+ co-doped Y2O3:Er3+ films with dopant concentration

Speghini A;Pelli S;
2015

Abstract

Abstract The effect of dopant concentration on the up-conversion emission, and in particular on the Er3+ related green and red emissions of spray pyrolysis deposited films of Y2O3:Er3+ co-doped with Li+, is reported. Er3+ concentrations in the films in the range of 1.1-5.6 at% (1.5-14 at% Er3+ in the spraying solution) were studied, as well as the effect of co-doping them with Li+. Large concentrations of Er3+ favor the red emission, especially for contents higher than 10 at% in the spraying solution. Li+ co-doping improves the green and red emissions up to 365 and 171 times, respectively, depending on the Er3+ and Li+ concentrations.
2015
Istituto di Fisica Applicata - IFAC
Er up-conversion
Li co-doping effect
Spray pyrolysis
Up-converting films
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/297741
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