2007
DOI: 10.1063/1.2709992
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Highly intense violet-blue light emission at room temperature in structurally disordered SrZrO3 powders

Abstract: Violet-blue photoluminescence was produced at room temperature in a structurally disordered SrZrO3 perovskite structure with a 350.7nm excitation line. The intensity of this emission was higher than that of any other perovskites previously studied. The authors discuss the role of structural order-disorder that favors the self-trapping of electrons and charge transference, as well as a model to elucidate the mechanism that triggers photoluminescence. In this model the wide band model, the most important events … Show more

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Cited by 114 publications
(78 citation statements)
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“…In our model, the wide band model, 28 the most important events occur before excitation, that is, before the arrival of the photon. Deep and shallow oxygen complex clusters generate localized states in the band gap and nonhomogeneous charge distribution in the cell, thereby allowing electrons to become trapped.…”
Section: Resultsmentioning
confidence: 99%
“…In our model, the wide band model, 28 the most important events occur before excitation, that is, before the arrival of the photon. Deep and shallow oxygen complex clusters generate localized states in the band gap and nonhomogeneous charge distribution in the cell, thereby allowing electrons to become trapped.…”
Section: Resultsmentioning
confidence: 99%
“…However, other several functional properties and applications for SZO have been reported in the literature. These properties are as follows: dielectric, 16 luminescence, 17 and protonic conductivity on Sc and Y stabilized SZO. 18 The Y/Sc stabilized ZrO 2 is a well known candidate for SOFC and it is being used as an electrolyte in the existing SOFC technology.…”
Section: Introductionmentioning
confidence: 99%
“…Verificaram que nenhum dos funcionais anteriormente disponíveis seria capaz de descrever, ao mesmo tempo,, todas as propriedades eletrônicas e estruturais de diferentes óxidos com diferentes estruturas e propuseram um novo conjunto de funcionais que descreve com maior precisão tanto as propriedades eletrônicas e estruturais destes óxidos. Verifica-se em alguns trabalhos publicados (De Lazaro, Longo et al, 2005;Longo, Cavalcante et al, 2007), que os funcionais híbridos, tais como o B3LYP, têm apresentado bons resultados com relação à predição do gap e, também, com relação às propriedades estruturais de óxidos tipo perovskita. …”
Section: Resultsunclassified
“…Esta propriedade aparece nestes materiais em decorrência de distorções da rede causadas pelos seus modificadores (Pizani, Leite et al, 2000;Zhang, Yin et al, 2001;Soledade, Longo et al, 2002;Pontes, Longo et al, 2003;Pontes, Pinheiro, Longo, Leite, De Lazaro, Magnani et al, 2003;Pontes, Pinheiro, Longo, Leite, De Lazaro, Varela et al, 2003;Sensato, 2003;Zhang, Yu et al, 2003;Matar e Subramanian, 2004;Souza, Simoes et al, 2006;Longo, Cavalcante et al, 2007;Cavalcante, Longo et al, 2008). O BZ possui alta estabilidade físico-química a altas temperaturas, sendo estável a 1700 °C (Azad, Subramaniam et al, 2002).…”
Section: Perovskitasunclassified
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