The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors

碩士 === 國立交通大學 === 應用化學系 === 87 === This research is attempted to investigate the effect of host compositions, activator concentration, crystal structure, and temperature on the luminescent properties of magnetoplumbite-type Sr(Ga1-xAlx)12O19: R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ; 0 ≦x≦1.0)...

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Main Authors: Fu-Yueh Shih, 施甫岳
Other Authors: Teng-Ming Chen
Format: Others
Language:zh-TW
Published: 1999
Online Access:http://ndltd.ncl.edu.tw/handle/37258061651739419558
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spelling ndltd-TW-087NCTU05000372016-07-11T04:13:50Z http://ndltd.ncl.edu.tw/handle/37258061651739419558 The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors 磁鉛礦型鹼土鋁鎵酸鹽螢光體之合成與特性鑑定 Fu-Yueh Shih 施甫岳 碩士 國立交通大學 應用化學系 87 This research is attempted to investigate the effect of host compositions, activator concentration, crystal structure, and temperature on the luminescent properties of magnetoplumbite-type Sr(Ga1-xAlx)12O19: R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ; 0 ≦x≦1.0) ( SGAO:R ) phosphors. The SGAO:R phases with R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) were prepared at 1,400℃ in the air via solid-state route, whereas the formation of SGAO:Mn2+ requires additional annealing under H2/Ar atmosphere at 1,000℃. The lattice dimensions of Sr(Ga1-xAlx)12O19: R were found to shrink gradually with increasing content of Al3+ dopant, as indicated by X-ray diffraction analysis. In addition, SrGa12O19 was found to be self-activating with emission wavelength (λem) of 429 nm, whereas SrAl12O19 is not, as indicated by cathodoluminescence (CL) measurements. On the other hand, with shrunk lattice dimensions the λem corresponding to 2E →4A2 transition in Sr(Ga1-xAlx)12O19:Cr3+ exhibited blue shift, whereas that corresponding to 4T1→6A1 transition in Sr(Ga1-xAlx)12O19:Mn2+ exhibited red shift. These observation can be rationalized by Tanabe-Sugano diagrams for octahedral Mn2+ and Cr3+ ions , respectively. On the contrary, theλem attributed to Sr(Ga1-xAlx)12O19:Eu3+ or Tb3+ phosphors remains unchanged with expanded lattice dimensions. Furthermore, we have also investigated the effect of activator concentration on the luminescent properties of SrM12O19:Eu3+ or Tb3+ ( M = Al, Ga ) and the optimal concentration was found to be 10 and 3 atom % for phases with Eu3+ and Tb3+ dopants, respectively. Theλem of typical R-lines of Cr3+ in SrM12O19: ( M = Al, Ga) has been determined to be 692.6 and 694.2 nm, respectively, and that attributed to 4T1→6A1 transition observed in SrGa12O19: Mn2+ was found to be 503 nm and highly dependent on the temperature, as indicated by temperature dependent photoluminescence (PL) emission studies. The PL and CL emission spectra of MgGa2O4: M ( M = Eu3+ , Tb3+ , Mn2+ ) phases were also investigated in this research. Teng-Ming Chen 陳登銘 1999 學位論文 ; thesis 119 zh-TW
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language zh-TW
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description 碩士 === 國立交通大學 === 應用化學系 === 87 === This research is attempted to investigate the effect of host compositions, activator concentration, crystal structure, and temperature on the luminescent properties of magnetoplumbite-type Sr(Ga1-xAlx)12O19: R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ; 0 ≦x≦1.0) ( SGAO:R ) phosphors. The SGAO:R phases with R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) were prepared at 1,400℃ in the air via solid-state route, whereas the formation of SGAO:Mn2+ requires additional annealing under H2/Ar atmosphere at 1,000℃. The lattice dimensions of Sr(Ga1-xAlx)12O19: R were found to shrink gradually with increasing content of Al3+ dopant, as indicated by X-ray diffraction analysis. In addition, SrGa12O19 was found to be self-activating with emission wavelength (λem) of 429 nm, whereas SrAl12O19 is not, as indicated by cathodoluminescence (CL) measurements. On the other hand, with shrunk lattice dimensions the λem corresponding to 2E →4A2 transition in Sr(Ga1-xAlx)12O19:Cr3+ exhibited blue shift, whereas that corresponding to 4T1→6A1 transition in Sr(Ga1-xAlx)12O19:Mn2+ exhibited red shift. These observation can be rationalized by Tanabe-Sugano diagrams for octahedral Mn2+ and Cr3+ ions , respectively. On the contrary, theλem attributed to Sr(Ga1-xAlx)12O19:Eu3+ or Tb3+ phosphors remains unchanged with expanded lattice dimensions. Furthermore, we have also investigated the effect of activator concentration on the luminescent properties of SrM12O19:Eu3+ or Tb3+ ( M = Al, Ga ) and the optimal concentration was found to be 10 and 3 atom % for phases with Eu3+ and Tb3+ dopants, respectively. Theλem of typical R-lines of Cr3+ in SrM12O19: ( M = Al, Ga) has been determined to be 692.6 and 694.2 nm, respectively, and that attributed to 4T1→6A1 transition observed in SrGa12O19: Mn2+ was found to be 503 nm and highly dependent on the temperature, as indicated by temperature dependent photoluminescence (PL) emission studies. The PL and CL emission spectra of MgGa2O4: M ( M = Eu3+ , Tb3+ , Mn2+ ) phases were also investigated in this research.
author2 Teng-Ming Chen
author_facet Teng-Ming Chen
Fu-Yueh Shih
施甫岳
author Fu-Yueh Shih
施甫岳
spellingShingle Fu-Yueh Shih
施甫岳
The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
author_sort Fu-Yueh Shih
title The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
title_short The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
title_full The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
title_fullStr The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
title_full_unstemmed The Synthesis and Characterization of Magnetoplumbite-type Sr(Ga1-xAlx)12O19:R ( R = Eu3+ , Tb3+ , Cr3+ , Mn2+ ) Phosphors
title_sort synthesis and characterization of magnetoplumbite-type sr(ga1-xalx)12o19:r ( r = eu3+ , tb3+ , cr3+ , mn2+ ) phosphors
publishDate 1999
url http://ndltd.ncl.edu.tw/handle/37258061651739419558
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