• Title/Summary/Keyword: $SrAl_2O_4:Eu^{2+},Dy^{3+}$

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The Photocatalytic Reaction of the Thin Film TiO2-Sr4Al14O25 Phosphors for Benzene Gas (박막 산화티타늄과 Sr4Al14O25 축광체를 조합한 복합소재의 벤젠가스에 대한 광촉매 반응)

  • Kim, Seung-Woo;Kim, Jung-Sik
    • Journal of the Korean Ceramic Society
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    • v.50 no.1
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    • pp.50-56
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    • 2013
  • Phosphorescent materials coated with titanium dioxide were fabricated and photocatalytic reactions between these materials and VOCs gases were examined. A thin film (approx. 100 nm) of nanosized $TiO_2$ was deposited on the $Sr_4Al_{14}O_{25}$ : $Eu^{2+}$, $Dy^{3+}$, $Ag^+$ phosphor using low-pressure chemical vapor deposition (LPCVD). The characteristics of the photocatalytic reaction were examined in terms of the decomposition of benzene gas using a gas chromatography (GC) system under ultraviolet (${\lambda}$ = 365 nm) and visible light (${\lambda}$ > 420 nm) irradiation. $TiO_2$-coated $Sr_4Al_{14}O_{25}$ : $Eu^{2+}$, $Dy^{3+}$, $Ag^+$ phosphor showed different photocatalytic behavior compared with pure $TiO_2$. $TiO_2$-coated phosphorescent materials showed a much faster photocatalytic decomposition of benzene gas under visible irradiation compared to the pure $TiO_2$ for which the result was practically negligible. This suggests that the extension of the absorption wavelength to visible light occurred through energy band bending by a heterojunction at the interface of the $Sr_4Al_{14}O_{25}-TiO_2$ composite. Also, the $Sr_4Al_{14}O_{25}-TiO_2$ composite showed the photocatalytic decomposition of benzene in darkness due to the photon light emitted from the $Sr_4Al_{14}O_{25}$ phosphors.

Microencapsulation of SrAl2O4 : Eu2+,Dy3+ Phosphorescent Phosphor for Enhanced Visibility of Road Lanes (차선의 시인성 향상을 위한 SrAl2O4 : Eu2+,Dy3+ 축광 마이크로 캡슐화에 관한 연구)

  • Park, Jae Il;Jeong, Soo Hwan;Cheong, In Woo
    • Journal of Adhesion and Interface
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    • v.17 no.3
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    • pp.110-116
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    • 2016
  • A decrease in the retro-reflectivity of glass-bead-covered road paint because of a rainwater film significantly reduces the visibility of drivers at night, and has been considered as a critical cause of traffic accidents. For enhanced visibility, the microencapsulation of hydrophobically modified $SrAl_2O_4:Eu^{2+}$,$Dy^{3+}$ phosphorescent phosphor was carried out via suspension polymerization of methyl methacrylate (MMA). The effects of surface modification agent and radical initiator types, loading amount of phosphorescent phosphor, and microcapsule size on the phosphor content ($W_{TGA}$) in the luminous poly(methyl methacrylate) (PMMA) microcapsules were investigated by thermogravimetric analyses (TGA). It was found that the $W_{TGA}$ value was ranged from 7 wt% to 81 wt%, which suggests suspension polymerization is suitable for the preparation of luminous microcapsules with a wide range of phosphor content. At a lower loading amount of phosphor, the $W_{TGA}$ value obviously increased as the microcapsule size decreased; however, the $W_{TGA}$ values with a higher loading amount of phosphor were less affected by the microcapsule size. The luminous microcapsules with the size range of $425{\sim}710{\mu}m$ were collected and tested as a luminous road lanes. It was found that luminance intensities of the microcapsule-coated plates remained higher than $300mcd/m^2$ for up to 100 s in darkness after 20 min of light emitting diode lamp irradiation. The results suggest that the luminous microcapsules can be a candidate for the replacement of glass beads for enhanced visibility of drivers.

Luminescent Properties of strontium aluminate phosphor (Strontium aluminate 형광체의 발광특성연구)

  • 한상혁;김영진
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.11a
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    • pp.185-185
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    • 2003
  • 백색 LED를 실현하는 방법의 하나로 UV LED와 적, 녹, 청의 3색 형광체를 이용하는 방법이 주목받고 있다. 이것은 연색성과 색온도 제어 특성이 뛰어나다. 그러나 기존의 형광체는 단파장, 약 250nm 전후, 에서 여기되는 특성을 갖고 있기 때문에 near UV(nUV), 약 380-410nm, 의 LED에 응용하기에는 발광특성에 문제점을 갖고 있다. 본 연구에서는 nUV 여기가 가능한 strontium aluminate를 flux를 이용한 고상반응법으로 합성하고 발광 특성을 분석하였다. SrO와 A1$_2$ $O_3$의 조합비와 반응조건에 따라서 SrA1$_2$ $O_4$ 흑은 Sr$_4$Al$_{14}$ $O_{25}$ 가 합성되었고, 이들은 도핑과 함께 각각 약 520nm에서의 녹색발광과 약 480nm에서의 청녹색 발광 특성을 보이고 있었다. 도펀트로는 Eu, Dy, Ce, Pr 등이 단독 혹은 혼합되어 첨가되었고, 종류와 양에 따라서 발광 파장의 이동이 관찰 되었고, 강도도 이것에 크게 의존하고 있었다. 또한 발광강도는 여기 파장에도 의존하고 있었으며, 약 350-390nm의 nUV에서 가장 높은 발광강도가 관찰되었다.다.

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Application of Mechanoluminescence for the Dynamic Visualization of an Alumina Fracture

  • Kim, Ji-Sik
    • Journal of Information Display
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    • v.11 no.1
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    • pp.33-38
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    • 2010
  • The propagation of cracks was quantitatively analyzed in $Al_2O_3$ ceramic using the mechanoluminescence (ML) of $SrAl_2O_4$:Eu,Dy. The bridging zones behind the crack tip were clearly detected in the crack path of $Al_2O_3$ within a realistic time frame. The magnitudes and shapes of the bridging stress distributions changed with the advancing cracks. They continued to change with the change in the applied load even after the cessation of crack propagation. Effective toughening then commenced, and the applied stress intensity factors dramatically increased up to ~50 MPa $\sqrt{m}$. The expected $K_{Tip}$ values based on the instantaneous bridging stress distributions obtained from the ML observations deviated greatly from those obtained from the measurement using the conventional crack tip lengths; rather, they support the results obtained when bridging tips were used in the quasidynamic crack propagations.

Effect of mixed alkaline earth doping on phosphorence properties of $BaAl_2O_4:Eu^{2+}$, $Dy^{3+}$

  • Singh, B.K.;Ryu, R.J.
    • Proceedings of the Korean Society Of Semiconductor Equipment Technology
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    • 2006.10a
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    • pp.22-25
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    • 2006
  • Long lasting phosphor materials are in great demand for their applications in the area of light emitting diodes (LEDs), commercial displays and warning signals. After glow longevity, brightness, photo-resistance and chemical and environment stability are most important qualities that are desired for these materials. Alumina as host lattice with various rare earth elements has been found to be good at the same time inexpensive material for the synthesis of the phosphor materials. This communication explored the effect of mixed rare earth metal on the luminescence properties of these materials for the first time. Various permutations and combinations of $Sr^{2+}$ and $Ba^{2+}$ have been investigated in order to achieve robust and high luminescence characteristics in the tailored phosphor materials.

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