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High Nd3+→Yb3+ energy transfer efficiency in tungsten‐tellurite glass: A promising converter for solar cells
Authors:Francine Bettio Costa  Keizo Yukimitu  Luiz Antonio de Oliveira Nunes  Marcio da Silva Figueiredo  Junior Reis Silva  Luis Humberto da Cunha Andrade  Sandro Marcio Lima  João Carlos Silos Moraes
Affiliation:1. Faculdade de Engenharia, Universidade Estadual Paulista ‐ UNESP, Ilha Solteira, SP, Brazil;2. Laboratório de Laser e Aplica??es, Instituto de Física de S?o Carlos‐IFSC, Universidade de S?o Paulo‐USP, S?o Carlos, SP, Brazil;3. Universidade Federal da Grande Dourados‐UFGD, Dourados, MS, Brazil;4. Grupo de Espectroscopia óptica e Fototérmica, Programa de Pós‐gradua??o em Recursos Naturais, Universidade Estadual de Mato Grosso do Sul‐UEMS, Dourados, MS, Brazil
Abstract:This work reports on the energy transfer efficiency for Nd3+/Yb3+ co‐doped tellurite glasses (80TO2‐20WO3, in mol%,). The correlation between Yb3+ ion concentration and the downconversion mechanism was investigated using optical and thermal lens spectroscopies, which enabled investigation of the radiative and nonradiative processes, respectively, involved in energy transfer from neodymium to ytterbium. The Nd3+ near‐infrared fluorescence disappeared almost entirely when the maximum concentration of Yb3+ ions (4 mol%) was doped into the host. In contrast, there was a corresponding increase in the ytterbium emission at around 980 nm. When ytterbium was added, there was also a simultaneous reduction in the amount of heat generated by the sample due to a reduction in the nonradiative decay rate, corroborating the suspected high energy transfer efficiency of Nd3+→Yb3+. The results indicate that tungsten‐tellurite glasses may be of potential use in solar cells for matching the solar emission spectrum to the semiconductor cell.
Keywords:downconversion process  energy‐transfer efficiency  optical spectroscopy  Tellurite glasses  thermal lens spectroscopy
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