• Title/Summary/Keyword: $Zn_{2-x}Mn_xSiO_4$

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Luminescent Properties of (Zn1-xCax)2SiO4:Mn,Al Green Phosphors for Various Concentration ((Zn1-xCax)2SiO4:Mn 녹색 형광체의 농도 변화에 따른 발광특성)

  • Yu, Il
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.23 no.4
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    • pp.323-326
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    • 2010
  • $(Zn_{1-x}Ca_x)_2SiO_4$:Mn phosphors doped with Ca were synthesized by solid state reaction method. $(Zn_{1-x}Ca_x)_2SiO_4$:Mn phosphors showed XRD patterns of Willemite structure. Also, $CaSiO_3$ structure and new peak near 610 nm in $(Zn_{1-x}Ca_x)_2SiO_4$:Mn with increasing value of x were observed from XRD and PL. The new peak near 610 nm in $(Zn_{1-x}Ca_x)_2SiO_4$:Mn with doping Ca was attributed to formation of $CaSiO_3$.

Preparation and Luminescent Properties of (Zn1-xMgx)2SiO4:mn Phosphors ((Zn1-xMgx)2SiO4:mn 형광체의 제조와 발광특성)

  • Lee, Ji-Young;Yu, Il
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.22 no.5
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    • pp.415-418
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    • 2009
  • $Zn_{2}SiO_{4}$:Mn green phosphors doped with Mg for PDP were synthesized by solid state reaction method. $Zn_{2}SiO_{4}$:Mn, Mg phosphors with increasing Mg concentration were changed from Rhombohedral to Orthorhombic structure. Photoluminescence intensity of $Zn_{2}SiO_{4}$:Mn phosphors doped with Mg 0.5 mol was definitely higher than that of Mg non-doped sample. The enhanced luminescence with doping Mg in the $Zn_{2}SiO_{4}$:Mn phosphors was interpreted by the increase of energy transfer from host to Mn ions with substitution Mg for Zn in the $Zn_{2}SiO_{4}$:Mn host.

Preparation and Luminescent properties of $(Zn_{1-x}Mg_x)_2SiO_4$:Mn phosphors ($(Zn_{1-x}Mg_x)_2SiO_4$:Mn 형광체의 제조와 발광특성)

  • Lee, Ji-Young;Yu, Il
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2007.11a
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    • pp.392-393
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    • 2007
  • PDP용 녹색 $Zn_2SiO_4$:Mn 형광체의 발광특성과 결정성을 향상시키기 위해 co-dopant로 Mg를 첨가한 $(Zn_{1-x}Mg_x)_2SiO_4$:Mn 형광체를 합성하였다. 합성된 형광체의 발광특성을 PL로 조사한 결과, $Zn_2SiO_4$:Mn 형광체는 Mg의 농도에 관계없이 530nm에서 녹색 발광을 하였고, Mg의 농도가 0.5 mol%일 때 가장 높은 발광세기가 나타났다. 이것은 Zn과 이온반경이 비슷한 Mg가 치환되어 모체에서의 Mn으로의 에너지 전이가 증가하여 발광세기가 증가한 것으로 생각된다.

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Photoluminescent Properties of $\textrm{Zn}_2\textrm{SiO}_4$:Mn Green Phosphors Prepared by the Solution Reaction Method (액상반응법으로 제조한 $\textrm{Zn}_2\textrm{SiO}_4$:Mn 녹색 형광체의 발광특성)

  • Park, Eung-Seok;Jang, Ho-Jeong;Jo, Tae-Hwan
    • Korean Journal of Materials Research
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    • v.9 no.1
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    • pp.46-50
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    • 1999
  • $\textrm{Zn}_{2-x}\textrm{Mn}_{x}\textrm{SiO}_{4}$ green phosphors have been prepared by the solution reaction method and the photoluminescence and crystalline properties were studied as a function of both the firing temperature ($900^{\circ}C$~$1200^{\circ}C$) and the concentration of Mn activator (x=0.01~0.20). Under 147 nm and 254nm and excitation sources, the emission intensity of the phosphors was increased about 4 times increasing firing temperatures from $900^{\circ}C$ to $1200^{\circ}C$. From the XRD analysis, $\textrm{Zn}_{2}\textrm{SiO}_{4}$:Mn phosphors fired above $1100^{\circ}C$ showed willemite crystal structure. Under 147nm excitation, the maximum emission intensity was obtained at the Mn concentration of x=0.02 for $\textrm{Zn}_{2-x}\textrm{Mn}_{x}\textrm{SiO}_{4}$ phosphors fired at $1200^{\circ}C$ and the concentration quenching was occurred at the Mn concentration above x=0.10. The phosphor particles showed almost spherical shapes with the average size of around 2~3$\mu\textrm{m}$ by the SEM morphology.

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Preparation and Characterization of Zn2SiO4:Mn2+ Green Phosphor with Solid State Reaction (고상법에 의한 Zn2SiO4:Mn2+녹색 형광체의 제조와 특성에 관한 연구)

  • Yoo, Hyeon-Hee;Nersisyan, Hayk;Won, Hyung-Il;Won, Chang-Whan
    • Korean Journal of Materials Research
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    • v.21 no.6
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    • pp.352-356
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    • 2011
  • [ $Zn_{2(1-x)}Mn_xSiO_4$ ]$0.07{\leq}x{\leq}0.15$) green phosphor was prepared by solid state reaction. The first heating was at $900^{\circ}C-1250^{\circ}C$ in air for 3 hours and the second heating was at $900^{\circ}C$ in $N_2/H_2$(95%/5%) for 2 hours. The size effect of $SiO_2$ in forming $Zn_2SiO_4$ was investigated. The temperature for obtaining single phase $Zn_2SiO_4$ was lowered from $1100^{\circ}C$ to $1000^{\circ}C$ by decreasing the $SiO_2$ particle size from micro size to submicro size. The effect of the activators for the Photoluminescence (PL) intensity of $Zn_2SiO_4:Mn^{2+}$ was also investigated. The PL intensity properties of the phosphors were investigated under vacuum ultraviolet excitation (147 nm). The emission spectrum peak was between 520 nm and 530 nm, which was involved in green emission area. $MnCl_2{\cdot}4H_2O$, the activator source, was more effective in providing high emission intensity than $MnCO_3$. The optimum conditions for the best optical properties of $Zn_2SiO_4:Mn^{2+}$ were at x = 0.11 and $1100^{\circ}C$. In these conditions, the phosphor particle shape was well dispersed spherical and its size was 200 nm.

Photoluminescence Properties of $Zn_{2-x-y}SiO_4:Mn_x,\;M_y$ Phosphors ($Zn_{2-x-y}SiO_4:Mn_x,\;M_y$계 형광체의 발광특성)

  • Cho, Bong Hyun;Sohn, Kee Sun;Park, Hee Dong;Chang, Hyun Ju;Hwang, Taek Sung
    • Journal of the Korean Chemical Society
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    • v.43 no.2
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    • pp.206-212
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    • 1999
  • The main objective of the present investigation is to improve the photoluminescent performance of existing $Zn_2SiO_4:Mn$ phosphors by introducing a new co-dopant. The co-doping effect of Mg and/or Cr upon emission intensity and decay time was studied in the present investigation. The co-dopants incorporated into the $Zn_2SiO_4:Mn$ phosphors are believed to alter the internal energy state so that the change in emission intensity and decay time can be expected. Both Mg and Cr ions have a favourable influence on photoluminescence prpperties, for example, the Mg ion enhances the intensity of manganese green emission and the Cr ion shortens the decay time. The enhancement in emission intensity of $Zn_2SiO_4:Mn,\;Mg$ phosphors was interpreted by taking into account the result from the DV-X${\alpha}$ embedded cluster calculation. On the other hand, the energy transfer between Mn and Cr ions was found to be responsible for the shortening of decay time in$Zn_2SiO_4:Mn,\;Cr$ phosphors.

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Control of Particle Size and Luminescence Property in Zn$_2$SiO$_4$:Mn Green Phosphor (Zn$_2$SiO$_4$:Mn 녹색형광체의 입도제어 및 발광특성)

  • Seong, Bu-Yong;Jeong, Ha-Gyun;Park, Hui-Dong
    • Korean Journal of Materials Research
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    • v.11 no.8
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    • pp.636-640
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    • 2001
  • In order to improve the optical Performance of green emitting phosphor for plasma display panel (PDP) application, the wet chemical method for preparing $Zn_{2-x}$ $SiO_4$:xMn (xi=0.02. 0.08) phosphor was designed. The spherical phosphor particles were obtained and the size can be between 0.5$\mu\textrm{m}$ and 2$\mu\textrm{m}$. The formation of phosphor, which had the willemite structure, was completed at relatively low temperature of 108$0^{\circ}C$. Also, photoluminescence Properties of the phosphors prepared were investigated under vacuum ultraviolet excitation. In particular, the emission intensity of Zn$_2$SiO$_4$:0.08Mn phosphor having the 1$\mu\textrm{m}$ of particle size was higher than that of commercial phosphor by 40%. The decay time of zinc silicate powder prepared as containing 8 mole% of manganese has been measured as 7.8ms.

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Control of Particle Size and Luminescence Property in Zn$_2$SiO$_4$:Mn Green Phosphor (Zn$_2$SiO$_4$:Mn 녹색형광체의 입도제어 및 발광특성)

  • 성부용;정하균;박희동
    • Korean Journal of Materials Research
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    • v.11 no.8
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    • pp.363-363
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    • 2001
  • In order to improve the optical Performance of green emitting phosphor for plasma display panel (PDP) application, the wet chemical method for preparing $Zn_{2-x}$ $SiO_4$:xMn (xi=0.02. 0.08) phosphor was designed. The spherical phosphor particles were obtained and the size can be between 0.5$\mu\textrm{m}$ and 2$\mu\textrm{m}$. The formation of phosphor, which had the willemite structure, was completed at relatively low temperature of 108$0^{\circ}C$. Also, photoluminescence Properties of the phosphors prepared were investigated under vacuum ultraviolet excitation. In particular, the emission intensity of Zn$_2$SiO$_4$:0.08Mn phosphor having the 1$\mu\textrm{m}$ of particle size was higher than that of commercial phosphor by 40%. The decay time of zinc silicate powder prepared as containing 8 mole% of manganese has been measured as 7.8ms.