Synthesis and photoluminescence properties of Sm-doped CaWO4 nanoparticles |
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Authors: | Qi Xiao Qitao Zhou Ming Li |
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Affiliation: | School of Resources Processing and Bioengineering, Central South University, Changsha 410083, China |
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Abstract: | ![]() The Sm3+-doped CaWO4 nanoparticles were synthesized by hydrothermal method. The room temperature photoluminescence (PL) spectra of Sm3+-doped CaWO4 nanoparticles doped with different Sm3+ concentrations under 405 nm excitation have been investigated. The PL spectra showed four strong emission peaks at 460, 571, 609, and 653 nm. The first emission peak at 460 nm could be due to a structural defect of the lattice, an oxygen-deficient WO3 complex. The other three emissions at 571, 609, and 653 nm were due to the f-f forbidden transitions of the 4f electrons of Sm3+, corresponding to 4G5/2→6H5/2 (571 nm), 6H7/2 (609 nm), and 6H9/2 (653 nm), respectively. In addition, the optimum Sm3+ concentration in CaWO4 nanoparticles for optical emission was determined to be 1.0%. The Sm3+4G5/2→6H7/2 (609 nm) emission intensity of Sm3+-doped CaWO4 nanoparticles significantly increased with the increase of Sm3+ concentration, and showed a maximum when Sm3+ doping content was 1.0%. If Sm3+ concentration continued to increase, namely more than 1.0%, the Sm3+4G5/2→6H7/2 emission intensity would decrease. The present materials might be a promising phosphor for white-light LED applications. |
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Keywords: | Sm3+-doped CaWO4 Nanoparticles Photoluminescence |
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