$SrAl_{12}O_{19}:Mn^{4+}$ 적색 형광체의 플럭스와 Mn 농도에 따른 영향 및 발광특성

Photoluminescence properties of $SrAl_{12}O_{19}:Mn^{4+}$ red phosphor depending on Mn concentration and fluxes

  • 박우정 (성균관대학교 신소재공학과) ;
  • 정몽권 (성균관대학교 신소재공학과) ;
  • 문지욱 (성균관대학교 신소재공학과) ;
  • 윤대호 (성균관대학교 신소재공학과)
  • Park, W.J. (School of Advanced Materials Science & Engineering, Sungkyunkwan University) ;
  • Jung, M.K. (School of Advanced Materials Science & Engineering, Sungkyunkwan University) ;
  • Moon, J.W. (School of Advanced Materials Science & Engineering, Sungkyunkwan University) ;
  • Yoon, D.H. (School of Advanced Materials Science & Engineering, Sungkyunkwan University)
  • 발행 : 2007.08.03

초록

본 연구에서는 장파장 UV 영역하에서 비교적 우수한 발광강도를 가지는 적색 형광체를 얻기 위하여 고상법으로 합성하여 발광특성을 관찰하였다. $SrAl_{12}O_{19}:Mn^{4+}$ 적색 형광체의 발광강도는 $Mn^{4+}$$^2E\to^4A_2$ 천이 때문에 643, 656, 666, 671 nm에서 4개의 sharp한 peak이 $600{\sim}700 nm $의 영역에서 발생하였으며, 여기 스펙트럼은 $250{\sim}550 nm$ 넓은 영역에서 338, 398, 468nm 3개의 peak이 발생하였다. 또한 $SrAl_{12}O_{19}:Mn^{4+}$에 0.67mol% MgO를 함유한 $SrAl_{12}O_{19}:Mn^{4+}$의 상대적인 발광강도는 $SrAl_{12}O_{19}:Mn^{4+}$ 보다 약 30% 정도 증가하였는데, 이러한 원인은 MgO가 첨가되어 $Al_2O_3$ 부분에 대체되어진 것으로 사료된다. 또한, 발광강도를 향상시키기 위하여 0.67mol% MgO를 함유한 $SrAl_{12}O_{19}:Mn^{4+}$ 시료에 $CaF_2$를 첨가하였다. 0.67mol% $CaF_2$와 0.67mol% MgO를 함유한 $SrAl_{12}O_{19}:Mn^{4+}$의 656nm에서의 상대적인 발광강도는 융제를 첨가하지 않은 $SrAl_{12}O_{19}:Mn^{4+}$보다 약 48% 이상 증가하였다.

The red emission properties of $Mn^{4+}$ doped $SrAl_{12}O_{19}$ prepared by the solid-state reaction was investigated, in order to verify its potential to act as the red emitting phosphor of white LEDs. The emission spectrum exhibits a narrow band between $600{\sim}700 nm $ with four sharp peaks occurring at about 643, 656, 666, 671 nm due to the $^2E\to^4A_2$ transition of $Mn^{4+}$. The excitation spectrum exhibits a broad band between $200{\sim}500 nm$ with three peaks occurring at about 338, 398 and 468 nm, respectively. Moreover, the relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ with or without $CaF_2$ and MgO fluxes measured at excitation source 390 nm. The relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ containing 0.67mol% MgO was approximately 30% higher than that of the base composition sample. Strontium hexa-aluminate measured at room temperature as a function of the substituted Mg concentration. MgO was added to replace part of the $Al_2O_3$. Also, the relative emission intensity of $SrAl_{12}O_{19}:Mn^{4+}$ containing 0.67 mol% MgO and 0.67 mol% $CaF_2$ was approximately about 48% higher than that of the base composition $SrAl_{12}O_{19}:Mn^{4+}$.

키워드

참고문헌

  1. C.H. Hong, 'The latest research trend of white - emitting LED-s for semiconductor illumination', KIEEME 14[11] (2001) 25
  2. S.J. Hong, 'White-light development technology trend', Bull. of the KIEEME 14[11] (2001) 20
  3. M. Schoichi, 'Light emitting diode display', Electronic Display (1998) 199
  4. J.M. Lee, J.G Yoo, D.H. Park and K.S. Sohn 'A search for red phosphors using genetic algorithm and combinatorial chemistry', J. Korean Ceram. Soc. 40[12] (2003) 1170
  5. S. Qiang, C. Barthou, J.P. Denis, F. Pelle and B. Blanzat, 'Luminescence and energy transfer in $Y_2O_3$ codoped with $Bi^{3+} $ and $Eu^{3+}$ ', J. Lumin. 28 (1983) 1 https://doi.org/10.1016/0022-2313(83)90021-2
  6. T.R. Wagner and M.O'Keeffe, 'Bond lengths and valences in aluminates with the magnetoplumbite and $\beta $ alumina structures', J. Solid State Chern. 73 (1988) 211 https://doi.org/10.1016/0022-4596(88)90071-0
  7. H.W. Leverenz, 'An introduction to luminescent of solids', Dover, New York (1968) 333
  8. T. Murata, T. Tanoue, M. Iwasaki, K. Morinaga and T. Hase, 'Fluorescence properties of $Mn^{4+} $ in $CaAl_{12}O_{19}$ compounds as red-emitting phosphor for white LED', J. Luminescence 114 (2005) 207 https://doi.org/10.1016/j.jlumin.2005.01.003