• Title/Summary/Keyword: Blue phosphor

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The Cathodoluminance Properties of $Y_2SiO_5$:Ce Blue Phosphor with Surface Coatings ($Y_2SiO_5$:Ce 청색 형광체의 표면 코팅에 따른 음극선 발광특성)

  • 음현중;김성우;이임렬
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.590-593
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    • 1999
  • $Y_2SiO_5$:Ce was considered as blue phosphor for field emission display because it had an excellent resistance against brightness saturation. But unfortunately It hadn't a sufficient brightness to be applied to FED. In this experiment It-$In_2O_3$, MgO and $SiO_2$ were coated onto $Y_2SiO_5$:Ce phosphor in order to improve the cathodoluminance(CL properties. The coating structures were identified to be the crystalline phases of $In_2O_3$ and MgO respectively. They had fine particle-like shape and were distributed on the surface of $Y_2SiO_5$:Ce phosphor. It was found that the CL efficiency of $Y_2SiO_5$:Ce phosphors were decreased after coatings with In20:j and MgO in voltage range from 500 V to 5 kV. But the brightness of $Y_2SiO_5$:Ce phosphor was increased after coating of 5 0 2 . And also the aging test showed that $In_2O_3$ coating improved the life time of $Y_2SiO_5$:Ce phosphor.

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Improved White Light Emitting Diode Characteristics by Coating GdAG:Ce Phosphor

  • Joshi, Charusheela;Yadav, Pooja;Moharil, S.V.
    • Transactions on Electrical and Electronic Materials
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    • v.15 no.2
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    • pp.69-72
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    • 2014
  • White LEDs, based on blue LED chips coated with a yellow emitting phosphor (YAG:Ce), have several disadvantages. In this paper, we report the improvement in CRI [Color Rendition Index] using $GdAl_5O_{12}:Ce$ (GdAG:Ce) and related phosphors for blue LEDs. A modified combustion synthesis route using mixed fuel was used for synthesis route. By using this procedure, we formed the desired compounds in a single step. LEDs were then fabricated by coating the blue LED chips (CREE 470 nm, 300 micron) with the GdAG:Ce phosphor dispersed in epoxy resin. The CRI typically between 65~70 for the YAG:Ce based LED was improved to 87 for LEDs fabricated from the Gd(Al,Ga)G phosphors.

Application of a Flashlight system for White LEDs Manufactured using a Reproduction Phosphor (재생 형광체로 제조한 백색 LED의 손전등 시스템에의 적용)

  • Ryu, Jang-Ryeol
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.8
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    • pp.5195-5200
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    • 2014
  • White LEDs are expected to be applied widely as a lighting system. To make white LED chips, one requires a mixture with silicon and a phosphor coating on a LED blue chip. The process of preparing a mixture with silicon using phosphor involves the use of discarded phosphor in the chip process. Reducing the costs of chip production depends on many factors, such as the mixture errors, exposure over time of silicon, and changes in the characteristics of blue chip. This paper reports the characteristics of a white LED chip manufactured through a reproduction process of derelict phosphor. This method was applicable to a real LED flashlight. A derelict phosphor chip showed similar results to a normal white chip for the degradation of cd 3.2[Cd] and 3.6[Cd], color temperature, 57[K] and 58[K], and maximum white wavelength 444.3[nm] and 449.8[nm]. These results are expected to make ea great contribution to cost reduction.

Luminescence Properties of Ba3Si6O12N2:Eu2+ Green Phosphor

  • Luong, Van Duong;Doan, Dinh Phuong;Lee, Hong-Ro
    • Journal of the Korean institute of surface engineering
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    • v.48 no.5
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    • pp.211-217
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    • 2015
  • To fabricate white LED having a high color rendering index value, red color phosphor mixed with the green color phosphor together in the blue chip, namely the blue chips with RG phosphors packaging is most favorable for high power white LEDs. In our previous papers, we reported on successful syntheses of $Sr_{2-}$ $Si_5N_8:Eu^{2+}$ and $CaAlSiN_3$ phosphors for red phosphor. In this work, for high power green phosphor, greenemitting ternary nitride $Ba_3Si_6O_{12}N_2:Eu^{2+}$ phosphor was synthesized in a high frequency induction furnace under $N_2$ gas atmosphere at temperatures up to $1400^{\circ}C$ using $EuF_3$ as a raw material for $Eu^{2+}$ dopant. The effects of molar ratio of component and experimental conditions on luminescence property of prepared phosphors have been investigated. The structure and luminescence properties of prepared $Ba_3Si_6O_{12}N_2:Eu^{2+}$ phosphors were investigated by XRD and photoluminescence spectroscopy. The excitation spectra of $Ba_3Si_6O_{12}N_2:Eu^{2+}$ phosphors indicated broad excitation wavelength range of 250 - 500 nm, namely from UV to blue region with distinct enhanced emission spectrum peaking at ${\approx}530nm$.

Optical Properties of White Light Sources Using Red, Green, Blue Emitting Phosphors and Violet Light Emitting Diodes (적색, 녹색, 청색 발광 형광체와 보라색 발광 다이오드를 이용한 백색 광원의 광 특성)

  • Kweon, Seok-Soon;Park, Jong-Yun;Huh, Young-Duk
    • Korean Journal of Materials Research
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    • v.16 no.3
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    • pp.145-150
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    • 2006
  • Various colors of light emitting diodes(LED) and four-band white light sources are obtained using a violet LED and various phosphor films. $BaMg_2Al_{16}O_{27}:Eu\;(blue),\;SrGa_2S_4:Eu\;(green),\;and\;Eu(TTA)_3(PTA)$ (red) phosphors are dispersed in poly-vinyl-alcohol aqueous solutions, and phosphor films are prepared by coating the suspensions to PET film. The narrow band emission of $Eu(TTA)_3(PTA)$ phosphor has excellent red luminescent property for four-band white light excited by the violet LED.

Effect of Cu concentration on the luminescence of ZnS:Cu,Cl blue-green phosphor

  • Cho, Tai-Yeon;Lee, Hak-Soo;Han, Sang-Do;Gwak, Ji-Hye;Shin, Dong-Hyuk;Han, Chi-Hwan
    • 한국정보디스플레이학회:학술대회논문집
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    • 2007.08b
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    • pp.1537-1538
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    • 2007
  • ZnS:Cu,Cl phosphor was synthesized by solid-liquid state reaction with two firing steps. Each stage of the process was carefully monitored so that the final product was comparable to commercially-available phosphor. The effect of $Cu^{2+}-doping$ concentration has been investigated on the luminescence characteristics of ZnS:Cu,Cl blue-green phosphors for inorganic electroluminescent device.

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Control of Blue Phosphor Layer Cross-section and Its Improved Discharge Characteristics

  • Jeon, Byung-Soo;Choi, Seo-Young;Moon, Cheol-Hee;Heo, Eun-Gi;Lee, Kwang-Sik;Whang, Ki-Woong;Bae, Chul-Han
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.583-585
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    • 2002
  • The effects of phosphor properties such as the granular sizes and shape on the crosssectional shape of phosphor layer and plasma discharge characteristics for improving the luminance and luminous efficiency in ac PDP have been investigated. As the granular size decreases, the thickness of vertical side of barrier rib in blue cell decreases, and wheras the thickness of bottom side increases due to increased dispersibility. In addition, the phosphor with round granular shape showing good dispersibility shows better voltage margin and higher luminous efficiency due to their improved discharge volume and packing density.

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Effect of Chip Wavelength and Particle Size on the Performance of Two Phosphor Coated W-LEDs

  • Yadav, Pooja;Joshi, Charusheela;Moharil, S.V.
    • Transactions on Electrical and Electronic Materials
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    • v.15 no.2
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    • pp.66-68
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    • 2014
  • Most commercial white LED lamps use blue chip coated with yellow emitting phosphor. The use of blue excitable red and green phosphors is expected to improve the CRI. Several phosphors, such as $SrGa_2S_4:Eu^{2+}$ and $(Sr,Ba)SiO_4:Eu^{2+}$, have been suggested in the past as green components. However, there are issues of the sensitivity and stability of such phosphors. Here, we describe gallium substituted $YAG:Ce^{3+}$ phosphor, as a green emitter. YAG structures are already accepted by the industry, for their stability and efficiency. LEDs with improved CRI could be fabricated by choosing $Y_3Al_4GaO_{12}:Ce^{3+}$ (green and yellow), and $SrS:Eu^{2+}$ (red) phosphors, along with blue chip. Also, the effect of a slight change in chip wavelength is studied, for two phosphor-coated w-LEDs. The reduction in particle size of the coated phosphors also gives improved w-LED characteristics.

Formation and Characterization of Green and Blue Phosphor Nano Powders (녹색과 청색 형광체 나노 분말의 합성 및 특성 평가)

  • Kwon, Oh Sung;You, Young Chul;Kim, Sang Min;Kim, Ki Do;Lim, Hyung Sup;Kim, Hee Taik
    • Applied Chemistry for Engineering
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    • v.20 no.5
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    • pp.565-569
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    • 2009
  • Nano-sized green and blue phosphor powders were synthesized by liquid phase method to confirm the size and morphology. By using that process, the particle sizes of green and blue phosphor particles were 80 nm and 60 nm, respectively. The characteristic comparison of $Zn_2SiO_4$ : Mn and BAM : Eu was carried out and as a result, $Zn_2SiO_4$ : Mn powders showed an higher PL performance compared to BAM : Eu.

Study of Europium-activated Calcium Aluminium Silicate Phosphors (유로피움-활성화 칼슘 알루미늄 실리케이트 형광체 연구)

  • Hwang, Jung-Ha;Park, Ju-Seok;Jang, Bo-Yun;Nahm, Sahn;Kim, Joon-Soo;Yu, Soon-Jae
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.19 no.11
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    • pp.1020-1024
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    • 2006
  • Europium$(Eu^{2+}\;or\;Eu^{3+})$-activated calcium aluminium silicate phosphors were synthesized for the first time and the structures and luminescence characteristics of these phosphors were investigated. The phosphors in this study emitted blue, green, and even red light depending on the starting milterials and annealing conditions for synthesis. In addition, the structure was also changed when the different starting materials were used. When $CaCO_3$ was used as a starting material, tetragonal $Ca_2Al_2SiO_7$ was formed. However, pure green light was emitted when the annealing was conducted in reduced atmosphere and red one was emitted by annealing in air. In the case of $CaSiO_3$ as a starting material, triclinic $CaAl_2Si_2O_8$ was formed and only pure blue emission was observed. Moreover, this blue phosphor exhibited higher intensity than that of commercial YAG:Ce phosphor, which showed the possibility of application on the phosphor for new light source such as a UV-LED.