• 제목/요약/키워드: blue phosphor

검색결과 213건 처리시간 0.027초

졸-겔법을 이용한 LED용 형광체의 합성 (Synthesis of Phosphor for Light-Emitting Diodes by Sol-Gel Method)

  • 안중인;한정화;박정규;김창해
    • 한국재료학회지
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    • 제14권10호
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    • pp.749-753
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    • 2004
  • In this study, we attempt to synthesize the $Sr_{3}SiO_{5}:Eu$ yellow phosphor by sol-gel technique. Based on the blue emitting diodes as primary light source, white light emitting diodes have been manufactured using the $Sr_{3}SiO_{5}:Eu$ yellow phosphor as the luminescent material. Luminescent efficiency of yellow phosphor as well as that of blue LED is very important factor to enhance the luminescent efficiency of white LED. In order to improve the luminescent efficiency, we have synthesized the $Sr_{3}SiO_{5}:Eu$ phosphor by sol-gel technique. To research optimum condition of gelation reaction, the ratio of $H_{2}O$ to TEOS was fixed as 60:1. When the drying temperature was at $100^{\circ}C$, emission intensity was better than at $70^{\circ}C$. The critical $Eu^{2+}$ concentration was estimated to be about 0.05 mol and sintering temperature at $1300^{\circ}C$ was indicated best emission intensity.

FED용 GdOBr:Ce 청색 형광체의 제조 및 발광특성 (Preparation and Luminescent Properties of GdOBr:Ce Blue Phosphors for FED)

  • 이준;박정규;한정화;박희동;윤석승
    • 한국세라믹학회지
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    • 제39권3호
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    • pp.240-244
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    • 2002
  • $Gd_2O_3,\;CeO_2$$NH_4Br$ 분말을 사용하여 GdOBr:Ce 형광체를 고상 반응으로 합성하였다. GdOBr:Ce 형광체는 370nm UV 여기 하에 410∼430nm의 영역에서 청색 발광스펙트럼을 보였으며, 2mol%의 Ce 농도에서 최대 발광특성을 나타냈다. FED용 형광체로의 응용 가능성을 알아보기 위해 GdOBr:Ce 형광체의 음극서 발광(CL)을 측정하였다. CL의 경우 PL과 동일한 영역인 410∼430nm에서 발광을 나타냈으며, Ce 농도가 1mol%일 때 발광의 최대치를 보였다. CL에서의 degradation 효과를 보기 위해 전자선을 10분간 조사하여 상용형광체와 비교하였다. 이로부터 GdOBr:Ce 형광체를 FED용 청색 형광체로 응용할 수 있는 가능성을 확인하였다.

백색 발광다이오드에서의 혼합 형광체 모델링 (Modeling of Mixed Phosphors in White Light Emitting Diode)

  • 김도우;공다영;공명국
    • 한국전기전자재료학회논문지
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    • 제26권7호
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    • pp.567-574
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    • 2013
  • An optical model is proposed in the white LED using phosphor and LED chip. In this paper a new model that describes the absorption rate and quantum efficiency with increasing the mixing ratio of phosphor in silicone, and the allotment of the phosphor absorption optical power in the several phosphor mixing in the silicone. Single phosphor in silicone from the optical measurement data before and after molding, the solution to get the blue optical power and the phosphor emission optical power is proposed. By these solution the absorption rate and the quantum efficiency was obtained. The model with single phosphor mixing in the silicone the validity was confirmed.

UV pumped three color phosphor blend White emitting LEDs

  • Choi, Kyoung-Jae;Park, Joung-Kyu;Kim, Kyung-Nam;Kim, Chang-Hae;Kim, Ho-Kun
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1338-1342
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    • 2005
  • We have synthesized an $Eu^{2+}$-activated $Sr_3MgSi_2O_8$ blue phosphor and $Ba_2SiO_4$ green phosphor and $Ba^{2+}$ co-doped $Sr_3SiO_5$ red phosphor investigated an attempt to develop white LEDs by combining it with a GaN blue LED $chip(\lambda_{em}=405 nm)$. Three distinct emission bands from the GaN-based LED and the $(Sr_3MgSi_2O_8:Eu\; +\; Ba_2SiO_4:Eu\; +\; Ba^{2+}\; co-doped\; Sr_3SiO_5:Eu)$ phosphor are clearly observed at 460nm, 520 nm and at around 600 nm, respectively. These three emission bands combine to give a spectrum that appears white to the naked eye. Our results show that GaN (405 nm chip)-based $(Sr_3MgSi_2O_8:Eu\; +\; Ba_2SiO_4:Eu\; +\; Ba^{2+}\; co-doped\; Sr_3SiO_5:Eu) exhibits a better luminous efficiency than that of the industrially available product InGaN (460 nm chip)-based YAG:Ce.

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Deep Blue LED 광원과 형광체를 이용한 초고연색 백색 인공태양광 LED 소자의 개발 (Development & Reliability Verification of Ultra-high Color Rendering White Artificial Sunlight LED Device using Deep Blue LED Light Source and Phosphor)

  • 안종욱;권대규
    • 산업경영시스템학회지
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    • 제46권3호
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    • pp.59-68
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    • 2023
  • Currently, yellow phosphor of Y3Al5O12:Ce3+ (YAG:Ce) fluorescent material is applied to a 450~480nm blue LED light source to implement a white LED device and it has a simple structure, can obtain sufficient luminance, and is economical. However, in this method, in terms of spectrum analysis, it is difficult to mass-produce white LEDs having the same color coordinates due to color separation cause by the wide wavelength gap between blue and yellow band. There is a disadvantage that it is difficult to control optical properties such as color stability and color rendering. In addition, this method does not emit purple light in the range of 380 to 420nm, so it is white without purple color that can not implement the spectrum of the entire visible light spectrum as like sunlight. Because of this, it is difficult to implement a color rendering index(CRI) of 90 or higher, and natural light characteristics such as sunlight can not be expected. For this, need for a method of implementing sunlight with one LED by using a method of combining phosphors with one light source, rather than a method of combining red, blue, and yellow LEDs. Using this method, the characteristics of an artificial sunlight LED device with a spectrum similar to that of sunlight were demonstrated by implementing LED devices of various color temperatures with high color rendering by injecting phosphors into a 405nm deep blue LED light source. In order to find the spectrum closest to sunlight, different combinations of phosphors were repeatedly fabricated and tested. In addition, reliability and mass productivity were verified through temperature and humidity tests and ink penetration tests.

Ba-Mg-Al-O:$Eu^2+$ 청색형광체의 발광특성 (The Luminescence Property of Ba-Mg-Al-O:$Eu^2+$ Blue Phosphors)

  • 김광복;천희곤;조동율;구경완
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.157-161
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    • 2000
  • Blue phosphor of Ba-Mg-Al-O:Eu$^{2+}$ phase was fabricated by conventional firing techniques under reducing atmosphere and its photoluminescence properties are studied with varying Eu concentration and phost-annealing temperature under air atmosphere. This phosphors were well crystallized with particle size in the range of 3~5um and emitted a blue light at a dominent wavelength 450nm for 254nm UV irradiation. The concentration quenching wit Eu$^{2+}$ was that with increasing Eu concentration the energy transfer between the activator ions steadily improves, so that the excitation energy is transported over larger distances through the lattice before luminescence can occur. Thermal quenching also occurred in this phosphor means that in a host lattice with the $\beta$-alumina structure the bond of an Eu$^{2+}$ ion with the nearest-neighbour oxygen ion is much stronger than in a lattice with the magnetoplumbite structure.cture.

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다단 침전법에 의한 구형 BaMgAl10O17:Eu 형광체의 제조 및 특성 (Preparation and Properties of Spherical BaMgAl10O17:Eu Phosphor by Multi-step Precipitation Method)

  • 박정민;정하균;박희동;박윤창
    • 한국재료학회지
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    • 제12권11호
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    • pp.840-844
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    • 2002
  • A spherical $BaMgAl_{10}$ $O_{17}$ :Eu phosphor has been synthesized by a multi-step precipitation route. In order to successfully synthesize the phosphor with spherical shape, the hydrated-alumina particles should be controlled for spherical shape. In this process, the hydroxypropyl cellulose (HPC) was used as a dispersing reagent. This reagent plays an important role in that the particles were controlled to have the uniform size of sub-micron. The final product prepared by the multi-step precipitation method maintained spherical shape with uniform size of 0.4$\mu\textrm{m}$. It can be seen in X-ray diffraction patterns, formation of the single phase of $BaMgAl_{10}$ $O_{17}$ :Eu phosphor prepared by the multi-step precipitation method at $1350^{\circ}C$. Also, the emission spectra of spherical $BaMgAl_{O}$ $10_{17}$ :Eu phosphor in the present case was compared with those of commercially-available blue phosphor under VUV (Vacuum Ultra Violet) excitation. The luminescence process of the $BaMgAl_{10}$ $O_{17}$ :Eu phosphor is characterized by the $4f^{6}$$5d^1$longrightarrow4f$^{7}$ transition (blue) of the $Eu^{2+}$ ion acting as an activating center and the maximum luminescence intensity was obtained by reduction treatment at 145$0^{\circ}C$.

High-power LED용 ceramic 형광체 plate 제조 및 발광 특성 분석 (Fabrication and analysis of luminous properties of ceramic phosphor plate for high-power LED)

  • 지은경;송예림;이민지;송영현;윤대호
    • 한국결정성장학회지
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    • 제25권1호
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    • pp.35-38
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    • 2015
  • LED는 소비전력 절감, 사용수명 증가, 발광 파장 변화를 통한 다변적 적용이 가능하여 에너지 효율 증대의 대안으로 각광받고 있으며, 조명뿐만 아니라 디스플레이 백라이트, 차량용 헤드라이트 등 다양한 분야에 적용되고 있다. 현재 백색 LED를 구현하는 데에는 청색 LED와 황색 형광체를 혼합하는 방식이 주로 활용되며, 황색 형광체로는 YAG : $Ce^{3+}$가 많이 이용된다. 기존에는 형광체를 epoxy resin과 혼합하여 LED chip 위에 도포하여 경화시키는 패키징 방식을 주로 사용하였다. 하지만 페이스트 기반 패키징 방식은 열에 의한 형광체의 특성 저하와 효율 감소 문제를 일으킨다. 이러한 문제를 해결하기 위해 형광체 플레이트를 이용한 remote 방식이 이용되고 있지만, 플레이트 내부 전반사로 인한 광 효율 손실 또한 해결해야 할 문제이다. 본 연구에서는 플레이트 측면을 Ag로 코팅함으로써 플레이트 내부의 전반사에 의한 광 효율 손실을 해결하고자 하였다.

$CaWO_4$$Gd_2O_2S$ : Tb 증감지의 형광체 형태와 사진감도 특성에 관한 연구 (A Study on the Photographic Characteristics Related to the Morphology of Phosphor Layers in the $CaWO_4$ and $Gd_2O_2S$ : Tb Screen)

  • 이인자;허준
    • 대한방사선기술학회지:방사선기술과학
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    • 제16권1호
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    • pp.41-55
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    • 1993
  • Recently, various screen film system have been introduced in diagnostic radiology. There are two kinds of screen film system : blue emitting $CaWO_4$ screen has been largely used in these days. However, it tends to be changed to use green emitting $Gd_2O_2S$ : Tb screen. In this study, photographic characteristics of $CaWO_4$ and $Gd_2O_2S$ : Tb screen were investigated with luminescence, spectroscopy. The morphology of $CaWO_4$ and $Gd_2O_2S$ : Tb were also observed by using scanning electron microscope. The result obtained were as follows : 1. There was small difference in the thickness of phosphor layers for the front and back screen of blue emitting system, but little difference in those of green emitting system. 2. There was no difference in the size of phosphor particles between the front and back screen for each screen. However, the particle size was different for the various kinds of screens. 3. The shape of phosphor particle was round with many faces for all the screens. 4. In the exposure of X-ray with the same intensity, luminescent intensity of a green emitting system was $6{\sim}7$ times larger than that of a blue emitting system. 5. The thickness of phosphor layers does not affect on the sensitivity of the screens exposed by X-ray.

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Luminescent characteristics of a blue-emitting $CaAl_2Si_2O_8:Eu^{2+}$ phosphor and the effect of boron ion substitution

  • Kwon, Byoung-Hwa;Vaidyanathan, Sivakumar;Li, Hui;Jang, Ho-Seoung;Yoo, Hyoung-Sun;Jeon, Duk-Young
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2008년도 International Meeting on Information Display
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    • pp.578-580
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    • 2008
  • Blue-emitting $CaAl_2Si_2O_8:Eu^{2+}(CAS:Eu^{2+})$ phosphor, prepared by solid-state reaction, is described in this paper. We researched the effect of boron ion substitution in the host materials. The phase and luminescent properties were investigated using the powder X-ray diffraction(XRD) and photoluminescence(PL) spectra.

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