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Synthesis and photoluminescent characteristics of Eu3+-doped MMoO4(M=Sr,Ba)nanophosphors by a hydrothermal method 被引量:6

Synthesis and photoluminescent characteristics of Eu^(3+)-doped MMoO_4(M=Sr,Ba) nanophosphors by a hydrothermal method
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摘要 The europium ions doped MMoO4 (M=Sr, Ba) nanophosphors were successfully synthesized via a facile hydrothermal method using isopropanol. The relationship between phosphor crystalline phase, morphology, photohtminescent properties and hexadecyl trimethyl ammonium bromide (CTAB) concentration, pH value in precursor solution was investigated. The results indi- cated that the morphology and photoluminescent properties were strongly influenced by CTAB concentration and pH value in precursor solution. In SrMoO4:Eu3+ hosts, the phosphor surface tended to become smoother as the concentration of CTAB was increased; while particles tended to agglomerate as increasing pH value. The relative intensity ratio of charge transfer band to Eu3+ characteristic emission peaks of MMoO4:Eu3+ (M=Sr, Ba) was changed as CTAB concentration and pH value changed. The emission spectra of MMoO4:Eu3+ (M=Sr, Ba) could be adjusted by CTAB concentration and pH value due to their impacts on the structure. It was im- portant that the different morphologies and photoluminescent properties of MMoO4:Eu3+ (M=Sr, Ba) could be obtained by the facile hydrothermal method and modulated by changing CTAB concentration and pH value. The europium ions doped MMoO4 (M=Sr, Ba) nanophosphors were successfully synthesized via a facile hydrothermal method using isopropanol. The relationship between phosphor crystalline phase, morphology, photohtminescent properties and hexadecyl trimethyl ammonium bromide (CTAB) concentration, pH value in precursor solution was investigated. The results indi- cated that the morphology and photoluminescent properties were strongly influenced by CTAB concentration and pH value in precursor solution. In SrMoO4:Eu3+ hosts, the phosphor surface tended to become smoother as the concentration of CTAB was increased; while particles tended to agglomerate as increasing pH value. The relative intensity ratio of charge transfer band to Eu3+ characteristic emission peaks of MMoO4:Eu3+ (M=Sr, Ba) was changed as CTAB concentration and pH value changed. The emission spectra of MMoO4:Eu3+ (M=Sr, Ba) could be adjusted by CTAB concentration and pH value due to their impacts on the structure. It was im- portant that the different morphologies and photoluminescent properties of MMoO4:Eu3+ (M=Sr, Ba) could be obtained by the facile hydrothermal method and modulated by changing CTAB concentration and pH value.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2017年第4期347-355,共9页 稀土学报(英文版)
基金 Project supported by the Nation Natural Science Foundation of China(51562025) Graduate Student Innovation Special Funds(YC2016-S085)
关键词 MMoO4:Eu3+ (M=Sr Ba) hydrothermal method morphology photoluminescent properties CTAB concentration pH value rare earths MMoO4:Eu3+ (M=Sr, Ba) hydrothermal method morphology photoluminescent properties CTAB concentration pH value rare earths
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