• Title/Summary/Keyword: 잔광

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Synthesis of (Gd0.74Y0.11Tb0.15P1.15)OδPhosphors Using Combinatorial Chemistry (조합화학을 이용한 (Gd0.74Y0.11Tb0.15P1.15)Oδ 형광체 합성 및 발광특성)

  • 이재문;유정곤;박덕현;김지식;손기선
    • Journal of the Korean Ceramic Society
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    • v.41 no.5
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    • pp.381-387
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    • 2004
  • Recently developed Plasma Display Panels (PDP) require phosphors of high luminance at Vacuum Ultraviolet (VUV) excitation. The present investigation developed new PDP phosphors using combinatorial chemistry method. We applied T $b^{3+}$ -activated yttrium gadolinium phosphates system to our combinatorial fine-tuning technique. As a result, the optimum composition was determined to be (G $d_{0.74}$ $Y_{0.11}$T $b_{0.15}$) $P_{1.15}$ $O_{\delta}$ through the two-step combinatorial screening process including excess phosphorous and Gd replacement. We found that the sample of the optimum composition shows a higher luminescence efficiency at VUV excitation and a shorter decay time than the commercially available Z $n_2$ $SiO_4$:Mn phosphor.

형광에 관하여

  • 조득래
    • Product Safety
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    • s.72
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    • pp.66-69
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    • 1999
  • 다른 방사원의 방사, 혹은 입자의 빔(beam)에 의해 여기(勵起)되고, 어던 종류의 물질이 빛, 기타의 전자방사를 일으키는 것으로, 조사(照射)를 정지하면 10$^{-8}$S 정도의 단시간에 빛이 감쇠(減衰)한다. 이때 인광(燐光)과 같이 잔광이 지속되지 않는다. CRT(cathode-raytube: 음극선관)에서 전자빔에 의해 발광하고, 형광등의 경우는 자외선의 방사에 의해 가시광(可視光)이 생긴다. CRT의 경우, 형광물질에 따

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Study on the Optical Characteristics of the Green Phosphor for PDP Application (PDP용 녹색 형광체의 광 특성 개선에 관한 연구)

  • Han, Bo Yong;Yoo, Jae Soo
    • Korean Chemical Engineering Research
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    • v.47 no.2
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    • pp.150-156
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    • 2009
  • Plasma Display Panels(PDPs) require to have improved luminous efficiency, low manufacturing cost, and high image quality to compete with other flat display devices such as Liquid Crystal Displays(LCDs) and organic light-emitting diodes(OLEDs). In addition, the diversity of product line-up may be needed for high market share. In this paper, the optical characteristics of typical green phosphor for PDP application are reviewed and the problem-based solution will be proposed. We also shortly describe the principle of 3D-PDPs which are promising. Then, the requirement of green phosphor for 3D-PDP application is summarized and research achievement, as of now, is described. The typical problems of $Zn_2SiO_4:Mn$ phosphor, which is the most well-known, are the negatively charged surface property and the long decay time, which leads to unstable discharge in green cell and afterimage. These problems were solved by coating the phosphor surface with metallic oxide. It was found that $Al_2O_3$ would be the best material for $Zn_2SiO_4:Mn$ phosphor. It gives longevity as well as low operating voltage due to the charging effect in green cells. Also, new phosphors, $(Y,\;Gd)Al_3(BO_3)_4:Tb$ and $(Mg,\;Zn)Al_2O_4:Mn$ phosphor are proposed for increasing the luminance and reducing the decay time, which are capable to apply for 3D-PDP application.

Photoluminescence property and morphology of $Y_2SiO_5:Tb$ phosphor prepared by spray pyrolysis (분무열분해법으로 제조된 $Y_2SiO_5:Tb$형광체의 형상 및 발광특성)

  • 김민성;강윤찬;정경열
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.11a
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    • pp.99-99
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    • 2003
  • 최근들어 차세대 디스플레이 시장이 뜨겁게 달아오르고있다. 이에 따라서 보다 나은 발광특성 및 긴수명, 적정 잔광시간등 보다 우수한 형광체개발이 더욱 절실한 시점이다. 본 연구에서는 많은 형광체 후보물질중 하나인 yttrium silicate를 기상법으로 제조하였는데, 질산염 형태인 yttrium과 Tb에 소량의 질산에 용해시킨 Tetraethyl orthosilicate를 혼합하여 분무용액을 만든다음 분무 열분해법으로 제조하여 나온 $Y_2$SiO$_{5}$:Tb 입자들의 형상 및 발광특성등을 살펴보았다.

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Luminescence properties of a new $Tb^{3+}$ ion activated long persistent phosphor (새로운 $Tb^{3+}$ 이온 활성 축광성 형광체의 발광 특성)

  • Park, Byeong-Seok;Choi, Jong-Geon
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.19 no.3
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    • pp.130-134
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    • 2009
  • A new long persistent phosphors of $CaZrO_3$ was synthesized at high temperature with weak reduction atmosphere by a traditional solid state reaction method. Photoluminescence spectra analysis showed that the $CaZrO_3$ doped with $Tb^{3+}$ emitted green-yellow emission caused by the energy level transition from the $^5D_3$ and $^5D_4$ to $^7F_1{\sim}^7F_6$. The main emission spectra of 542 nm peak by the $^5D_4{\rightarrow}^7F_5$ transition was revealed through synthesizing at high temperature in $N_2$ gas atmosphere. The afterglow emission spectra of $CaZrO_3:Tb^{3+}$ long persistent phosphores arise at 546 nm peak of narrow range. After the 254 nm ultraviolet light excitation source was switched off, the green-yellow long persistent phosphor can be observed which could last for 8 h in the limit of light perception of dark-adapted human eyes ($0.32\;mcd/m^2$).

Quantitative Analysis of Phosphors Decay Characteristic for Flicker-free Display System Design (플리커 저감 디스플레이 시스템 설계를 위한 인광체 잔광 특성의 정량적 해석)

  • Kwon, Yong-Dae;Choi, Duk-Kyu;Han, Chan-Ho;Lee, Gwang-Soon;Kim, Eun-Su;Lee, Sang-Hoon;Sohng, Kyu-Ik
    • Journal of the Institute of Electronics Engineers of Korea SP
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    • v.37 no.6
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    • pp.9-16
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    • 2000
  • The perception of flicker on the computer display devices depends upon the temporal waveform of the phosphor decay characteristic, the frame rate, and the display size. The lowest frequency at which flicker is not perceived is called the critical fusion frequency or critical frequency. Critical fusion frequency is evaluated by the display illuminance and the modulation (m) defined as the ratio of the amplitude of first harmonic frequency to the DC of the waveform. In this paper, we analyze the relationship bet ween the critical fusion frequency, relating to the decay characteristic of the phosphors and luminance on the monitor, and the frame frequency. Also under considering the viewing angle, we presented the frame frequency that is less sensitive to the full size of the display device.

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Effect of $B_2O_3$ Addition on Synthesis of Long Phosphorescent $SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ Phosphor ($Eu^{2+}, Dy^{3+}$를 도핑한 $SrAl_2O_4$축광성 형광체 합성에 있어서 $B_2O_3$의 첨가 효과)

  • Yu, Yeon-Tae;Kim, Byeong-Gyu;Nam, Cheol-U
    • Korean Journal of Materials Research
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    • v.8 no.11
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    • pp.999-1004
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    • 1998
  • $SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ 축광성 형광체의 합성에 있어서 $B_2O_3$는 일반적으로 고상반응의 촉진을 위한 플럭스로서 첨가된다. 본 연구에서는 플럭스로 첨가되는 $B_2O_3$$SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ 형광체의 결정구조 및 잔광 특성에 미치는 영향을 조사하였다. 합성된 $SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ 형광체는 520nm에서 최대 피크를 갖는 폭넓은 발광 스펙트럼을 나타내었고, $B_2O_3$ 첨가량의 5wt%일 때 최대값을 나타내었다. $B_2O_3$의 첨가에 의해 $SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ 결정 내부에는 균일 변형(uniform strain)이 발생하였고 이 결과로 결정격자의 a축과 c축의 길이 및 $\beta$각이 감소하여다. 그리고 $SrAl_2O_4$ 결정내부의 균일 변형은 $Eu^{2+}$이온의 여기과정에서 발생하는 정공(hole)의 포획 사이트인 음이온 결함(negative defect)을 다량 발생시키는 원인이 되고, 결과적으로 $SrAl_2O_4$:$Eu^{2+}, Dy^{3+}$ 결정의 잔광 특성을 향상시키는 것으로 생각되었다.

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Afterglow Properties of LLBO Scintillation Crystal (리튬 루테튬 보레이트 섬광단결정의 잔광 특성)

  • Kim, Sunghwan
    • Journal of Sensor Science and Technology
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    • v.23 no.6
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    • pp.416-419
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    • 2014
  • We grew a $Li_6Lu(BO_3)_3:Ce^{3+}$ single crystal as a new scintillator. And, the scintillation and thermoluminescence properties of the scintillator were determined. The emission spectrum of $Li_6Lu(BO_3)_3:Ce^{3+}$ is located in the range of 370~530 nm, peaking at 416 nm and 439 nm, due to the $5d{\rightarrow}4f$ transition of $Ce^{3+}$ ions. The fluorescence decay time of the crystal is composed two components. The fast component is 34 ns (84%) and the slow component is 125 ns (16%) of the crystal. The afterglow is caused by the electron and hole traps in the crystal lattice. We determined physical parameters of the traps in the crystal. The thermoluminescence trap are composed a trap. The determined activation energy (E) and frequency factor (s) of the TL trap are 1.05 eV and $4.4{\times}10^{10}s^{-1}$, respectively.

A Study on the Phosphorescent Characteristics of Blue $\textrm{Ca}\textrm({Al}_{0.97}\textrm{B}_{0.03})_2\textrm{O}_4$: $\textrm{Eu}^{+2},\;\textrm{Nd}^{+3}$ Phosphor (청색 $\textrm{Ca}\textrm({Al}_{0.97}\textrm{B}_{0.03})_2\textrm{O}_4$: $\textrm{Eu}^{+2},\;\textrm{Nd}^{+3}$ 형광체의 잔광 특성에 관한 연구)

  • Kim, Dae-Su;Lee, Im-Ryeol
    • Korean Journal of Materials Research
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    • v.9 no.1
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    • pp.3-7
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    • 1999
  • The change of phosphorescent property with chemical modification and co-doping of Nd as an auxiliary activator in CaAl$_2$$O_4$: Eu\ulcorner, Nd\ulcorner phosphor, employing Nd\ulcornerion(0.6%) and an co-activator maintained its afterglow for 4.5 hours. And also the initial persistent brightness and phosphorescent property were further improved both by substituting Al by B atoms and incorporation of Nd\ulcorner ion. It was found that the persistent time was 30 hours for&Ca(Al_{0.97}\;B_{0.03}) $_2$$O_4$:EU\ulcorner(0.3%), Nd\ulcorner(0.6%) phosphor.

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