• Title/Summary/Keyword: $Y_2O_3$: $Eu^{3+}$

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Photoluminescence and long after -glow characteristics of $Sr_{1-x}Eu_xAl_2O_4$phosphor ($Sr_{1-x}Eu_xAl_2O_4$ 형광체의 발광 및 장잔광특성)

  • 이영기;김병규
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.8 no.3
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    • pp.493-497
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    • 1998
  • The synthesis of $Sr_{1-x}Eu_xAl_2O_4$ (x=0.005~0.2;mol%) phosphors and its properties of both photoluminescence and long-phosphorescent were investigated as a function of $Eu_2O_3$ composition. The peak wavelengths (520 nm) of phosphorescence spectra were found not to vary with the $Eu_2O_3$ composition (x) of $Sr_{1-x}Eu_xAl_2O_4$ crystals. Single phase of $SrAl_2O_4$ which determined by XRD and PL was obtained with the compositions of x<0.05 mol%. After the removal of light excitation (360 nm), the excellent after-glow characteristics of the phosphorescence were obtained with the $Eu_2O_3$ compositions of x<0.05 mol%, although the after-glow intensities for all phosphors vary exponentially with the times.

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Photoluminescent properties of red phosphor (Y,Gd)$_2$O$_3$: Eu for plasma display panel synthesized by homogeneous precipitation method (균일침전법으로 제조한 플라즈마 디스플레이용 적색 형광체 (Y,Gd)$_2$O$_3$: Eu의 발광특성)

  • 김유혁;김좌연
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.10 no.6
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    • pp.400-406
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    • 2000
  • The fired Precursor (Y,Gd,Eu)(OH)$CO_3$.$H_2O$$900^{\circ}C$ was used to synthesize the red phosphor $(Y,Gd)_2O_3$: Eu for plasma display panel. Rounded and ~l $\mu\textrm{m}$ diameter phosphor $(Y,Gd)_2O_3$: Eu can be obtained by the reaction of aformentioned powder with a small amount addition of flux at $1350^{\circ}C$ for 2 hours. Emission spectra of these phosphors were measured under excitation wavelength at 254 nm and 147 nm and the optimum concentrations of activator ion were determined at around 15 mo1e % and 10 mole % under these conditions, respectively. $BaCO_3$flux had the best property in emission intensity among the prepared $BaCO_3AlF_3$and $Li_3PO_4$phosphors. The properties of optimized sample were improved in terms of relative luminance and color coordinate comparing with commercial phosphor such as $Y_2O_3$: Eu.

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Growth of long persistent $SrAl_2O_4:Eu^{2+},\;Dy^{3+}$ phosphor single crystals by the Verneuil method (베르누이법 의한 장잔광성 $SrAl_2O_4:Eu^{2+},\;Dy^{3+}$ 단결정 성장)

  • Nam, Kyung-Ju;Choi, Jong-Keon
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.15 no.6
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    • pp.225-228
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    • 2005
  • We have grown the long persistent $SrAl_2O_4:Eu^{2+},\;Dy^{3+}$ phosphor single crystal by Verneuil method. The obtained single crystals were long persistent phosphorescence peaking at ${\lambda}=520nm$ with a size of about 5 mm diameter, 55 mm length. The melting temperature of $SrAl_2O_4:Eu^{2+},\;Dy^{3+}$ measured $T_{mp}=1968^{\circ}C$. The optimum composition was $SrCO_3:Al(OH)_3:Eu_2O_3:Dy_2O_3$ = 1 : 2 : 0.015 : 0.02. Flow rate of $H_2:O_2$ is about 4 : 1. Growthing rate is about 5 mm/hr. The spectra of the phosphorescence from the crystals are quite similar to those obtained with sintered powders used for luminous pigments. The crystalline structure of long persistent $SrAl_2O_4:Eu^{2+},\;Dy^{3+}$ phosphor single crystal was determined by X-ray diffraction.

Photoluminescence of Li-doped Y2O3:Eu3+ thin film phosphors grown by pulsed laser deposition

  • Yi, Soung-Soo
    • Journal of Sensor Science and Technology
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    • v.11 no.6
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    • pp.371-377
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    • 2002
  • $Y_2O_3:Eu^{3+}$ and Li-doped $Y_2O_3:Eu^{3+}$ thin films have been grown on sapphire substrates using a pulsed laser deposition technique. The thin film phosphors were deposited at a substrate temperature of $600^{\circ}C$ under the oxygen pressure of 100, 200 and 300 mTorr. The films grown under different deposition conditions have been characterized using microstructural and luminescent measurements. The crystallinity and photoluminescence (PL) of the films are highly dependent on the oxygen pressure. The PL brightness data obtained from $Y_2O_3:Eu^{3+}$ films grown under optimized conditions have indicated that sapphire is one of the most promising substrate for the growth of high quality $Y_2O_3:Eu^{3+}$ thin film red phosphor. In particular, the incorporation of $Li^{+}$ ions into $Y_2O_3$ lattice could induce a remarkable increase of PL. The highest emission intensity was observed with LiF-doped $Y_{1.84}Li_{0.08}Eu_{0.08}O_3(Y_2O_3LiEu)$, whose brightness was increased by a factor of 2.7 in comparison with that of $Y_2O_3:Eu^{3+}$ films. This phosphor may promise for application to the flat panel displays.

Synthesis and characterization of Y2O3 : Eu3+ red nano phosphor powders using RF thermal plasma (RF 열플라즈마를 이용한 Y2O3:Eu3+ 적색 나노 형광체 분말 합성)

  • Lee, Seung-Yong;Koo, Sang-Man;Hwang, Kwang-Taek;Kim, Jin-Ho;Han, Kyu-Sung
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.25 no.6
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    • pp.272-279
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    • 2015
  • $Y_2O_3:Eu^{3+}$ is an excellent red-emitting phosphor, which has been widely used for display devices due to highly luminescent property and chemical stability. In this study, $Y_2O_3:Eu^{3+}$ red phosphors were prepared using the solid state reaction and RF thermal plasma synthesis. The particle size of $Y_2O_3:Eu^{3+}$ phosphors obtained by the solid state reaction varied from 10 to $20{\mu}m$, and 30~100 nanometer sized $Y_2O_3:Eu^{3+}$ particles were obtained from a liquid form of raw material through RF thermal plasma synthesis without an additional heat treatment. Photoluminescence measurements of the obtained $Y_2O_3:Eu^{3+}$ particles showed a red emission peak at 611 nm ($^5D_0{\rightarrow}^7F_2$). PL intensity of red nano phosphors prepared by RF thermal plasma synthesis was comparable to that of red phosphors prepared by the solid state reaction, indicating that nano-sized $Y_2O_3:Eu^{3+}$ red phosphors could be successfully synthesized using one-step process of RF thermal plasma.

A Fundamental Study of Eu2+ Luminescence in Aluminum Borate Compounds (Aluminum Borate 화합물에 있어서 EU2+이온의 발광성)

  • Chang, Ki-Seog
    • Journal of the Korean Chemical Society
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    • v.44 no.4
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    • pp.350-355
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    • 2000
  • The compounds, CaAl$_2$(BO$_3$)$_2$O, SrAl$_2$(BO$_3$)$_2$O and BaAl$_2$(BO$_3$)$_2$O, are good host lattices for highly efficient $Eu^{2+}$ luminescence. The europium emission peaks at 450 nm in $Eu^{2+}$:CaAl$_2$(B0$_3$)$_2$O, 411 nm in $Eu^{2+}$: SrAl$_2$(BO$_3$)$_2$O and 375 nm in $Eu^{2+}$: BaAl$_2$(BO$_3$)$_2$O. The $Eu^{2+}$: CaAl$_2$(BO$_3$)$_2$O Phosphor shows a high output and should be a good maintenance in VUV Xe lamps. It is ideally suited for use in PDP phosphors. The $Eu^{2+}$ ion is interesting because the Stokes shift emission is a strong host dependent. The difference in the Stokes shift is oneimportant factor leadingto a difference in wavelength. If the 5d level of $Eu^{2+}$ ion is lower in energy,according to a decrease in the doping lattice size, then the emission wavelength will be longer and the Stokes shift will be smaller. Therefore, a knowledge of the relationship between the crystal lattice size and the Stokes shift. (orthe energy of the 5d level),is essential for beingable to predict $Eu^{2+}$ emission properties.

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Fabrication and characterization of nano phosphor using ultrafine $Y_2O_3:EU^{3+}$ particles (초미세 $Y_2O_3:EU^{3+}$ 분말을 이용한 나노 형광체의 제조 및 특성 평가)

  • Hong, Sung-Jei;Kwak, Min-Gi;Cho, Kyoon-Woo;Kim, Won-Geun;Moon, Dae-Gyu;Han, Jeong-In
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.07b
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    • pp.1062-1065
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    • 2003
  • 본 연구에서는 초미세 $Y_2O_3:EU^{3+}$ 분말을 이용하여 나노 형광체를 제조하였다. 나노 형광체는 소량의 Eu가 도핑된 $Y_2O_3$ 재질로 구성되어 있다. 형광체 분말의 결정화를 위해 $500{\sim}900^{\circ}C$의 온도로 열처리하였다. 제조된 나노 형광체를 HRTEM으로 관찰한 결과 입자 크기가 열처리 온도에 따라 약 $4{\sim}30nm$의 분포를 나타내었다. 또한 XRD로 결정상을 분석한 결과 주로 입방정 구조로 되어 있고 소량의 단사정 구조가 포함된 $Y_2O_3$ peak가 검출되었다. EDS 분석 결과 약 $6.7{\sim}7.5%$의 Eu가 검출되었다. 약 4nm 크기의 $Y_2O_3:EU^{3+}$ 분말로 제조한 나노 형광체의 발광 특성은 주요 파장대가 612nm인 PL spectrum이 관찰되어, 적색 형광체로서의 $Y_2O_3:EU^{3+}$ 나노 분말이 제조되었다.

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Effects of $ B_2O_3$ composition for the photoluminescence and after-glow charcteristics of $SrAl_2O_4:Eu^{+2},\;Dy^{+3}$ phosphors ($SrAl_2O_4:Eu^{+2},\;Dy^{+3}$ 장잔광 형광체에 있어서 발광 및 장잔광특성에 미치는$B_2O_3$의 영향)

  • 이영기;엄기석
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.14 no.3
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    • pp.123-128
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    • 2004
  • Both photoluminescence and the long-phosphorescent properties for $SrAl_2O_4$ : Eu$^{+2}$, $Dy^{+3}$ phosphor powder synthesized by the solid phase reaction were investigated as a function of $B_2O_3$ composition (0-10 wt%). The highest emission wavelength (520nm) of photoluminescence spectra was not affected by $B_2O_3$concentration. The highest emission intensity was obtained by the concentration of 3 wt% $B_2O_3$.After the removal of the Xenon lamp excitation (360nm), also, the excellent long-phosphorescent property of the phosphors was obtained by the concentration of 3 wt% $B_2O_3$ although the decay times for all phosphors decreased exponentially.

Dispersion and Shape Control on Nanoparticles of Gd2O3:Eu3+ Red Phosphor Prepared by Template Method (주형법으로 제조된 Gd2O3:Eu3+ 적색 형광체의 나노입자 분산 및 형상제어)

  • Park, Jeong Min;Ban, Se Min;Jung, Kyeong-Youl;Choi, Byung-Ki;Kang, Kwang-Jung;Kim, Dae-Sung
    • Korean Journal of Materials Research
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    • v.27 no.10
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    • pp.534-543
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    • 2017
  • $Gd_2O_3:Eu^{3+}$ red phosphors were prepared by template method from crystalline cellulose impregnated by metal salt. The crystallite size and photoluminescence(PL) property of $Gd_2O_3:Eu^{3+}$ red phosphors were controlled by varying the calcination temperature and $Eu^{3+}$ mol ratio. The nano dispersion of $Gd_2O_3:Eu^{3+}$ was also conducted with a bead mill wet process. Dependent on the time of bead milling, $Gd_2O_3:Eu^{3+}$ nanosol of around 100 nm (median particle size : $D_{50}$) was produced. As the bead milling process proceeded, the luminescent efficiency decreased due to the low crystallinity of the $Gd_2O_3:Eu^{3+}$ nanoparticles. In spite of the low PL property of $Gd_2O_3:Eu^{3+}$ nanosol, it was observed that the photoluminescent property was recovered after re-calcination. In addition, in the dispersed nanosol treated at $85^{\circ}C$, a self assembly phenomenon between particles appeared, and the particles changed from spherical to rod-shaped. These results indicate that particle growth occurs due to mutual assembly of $Gd(OH)_3$ particles, which is the hydration of $Gd_2O_3$ particles, in aqueous solvent at $85^{\circ}C$.