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      Estudo da decomposição térmica de oxalato de estrôncio dopado com cério(III) como precursor de materiais luminescentes Translated title: Thermal decomposition studies of Cerium(III)-doped strontium oxalate as luminescent material precursor

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          Abstract

          Este trabalho trata da obtenção de SrC2O4, Ce2(C2O4)3, e SrC2O4 dopado com diferentes porcentagens de Ce3+ como precursores do luminóforo azul Sr2CeO4. Os precursores preparados foram estudados por TG e DTA. Uma mistura contendo SrC2O4 e Ce2(C2O4)3 na relação 4:1 respectivamente e SrC2O4 dopado com diferentes porcentagens de Ce3+, foram tratadas termicamente à 1100ºC, 12 horas. Os produtos foram analisados por XRD e espectroscopia de luminescência e apresentam mistura das fases SrCeO3, Sr2CeO4 e SrCO3. Os produtos contendo a fase Sr2CeO4 apresentam luminescência azul de banda larga, com exceção daquele obtido a partir de SrC2O4 dopado com 50% de Ce3+. Neste caso a fase predominante é SrCeO3. Pela curva DTA observa-se um pico endotérmico em torno de 1000ºC para todas as amostras, com exceção da amostra dopada em 50%, evidenciando a temperatura de formação da fase Sr2CeO4. A fase luminescente Sr2CeO4 é preferencialmente obtida partindo-se de SrC2O4:Ce3+ 25% e de misturas mecânicas na proporção de 4:1 de oxalatos de estrôncio e de oxalato de cério.

          Translated abstract

          This work reports on the preparation of SrC2O4, Ce2(C2O4)3, and SrC2O4 doped with different percentages of Ce3+, as precursors for the new blue phosphor Sr2CeO4. Precursors were studied by using TG and DTA curves. A mixture containing SrC2O4 and Ce2(C2O4)3, in 4:1 ratio as well as SrC2O4 doped with different percentages of Ce3+, were heated under 1100ºC, 12 hours and the resulting products were analyzed by XRD and luminescence spectroscopy. All products prepared under 1100ºC, 12 hours were identified as a mixture of SrCeO3, Sr2CeO4 and SrCO3 phases. All products which Sr2CeO4 phase is detected, present blue wide band luminescence, except the one from SrC2O4 doped with 50% of Ce3+. In this case, the majority phase is SrCeO3 one. All samples DTA curves present endothermic peak ca 1000°C except the 50% doped one indicating the Sr2CeO4 phase formation. Therefore, the blue phosphor Sr2CeO4 is better prepared from SrC2O4:Ce3+ 25% or from SrC2O4 and Ce2(C2O4)3 mixtures.

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          Powder Diffraction File PDF-2 database sets 1-44

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            A rare-earth phosphor containing one-dimensional chains identified through combinatorial methods

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              Luminescence of Sr2CeO4

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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                eq
                Eclética Química
                Eclet. Quím.
                Fundação Editora da Universidade Estadual Paulista Júlio de Mesquita Filho - UNESP (São Paulo )
                1678-4618
                2002
                : 27
                : spe
                : 315-328
                Affiliations
                [1 ] Universidade Estadual Paulista Brazil
                [2 ] Universidade Estadual Paulista Brazil
                Article
                S0100-46702002000200027
                10.1590/S0100-46702002000200027
                df2452a2-48e8-4854-a2e6-c660224c9971

                http://creativecommons.org/licenses/by/4.0/

                History
                Product

                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=0100-4670&lng=en
                Categories
                CHEMISTRY, MULTIDISCIPLINARY

                General chemistry
                luminescence,thermal analysis,SrC2O4:Ce,Sr2CeO4,luminescência,análise térmica
                General chemistry
                luminescence, thermal analysis, SrC2O4:Ce, Sr2CeO4, luminescência, análise térmica

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