Compositional Dependence of Photoluminescence of $ZnGa_2O_4$

  • Lee, Yong-Jei (Department of Material Science and Engineering, Korea University) ;
  • Sahn Nahm (Department of Material Science and Engineering, Korea University) ;
  • Kim, Myong-Ho (Department of Material Science and Engineering, Changwan Natinal University) ;
  • Suh, Kyung-Soo (Semiconductor division, ETRI, Yusong) ;
  • Cho, Kyung-Ik (Semiconductor division, ETRI, Yusong) ;
  • Yoo, Hyung-Joon (Semiconductor division, ETRI, Yusong) ;
  • Byun, Jae-Dong (Department of Material Science and Engineering, Korea University)
  • Published : 1997.06.01

Abstract

The photoluminescence characteristics of the zinc gallate have been investigated as a function of the composition and the firing atmosphere. Two distinct emission bands were observed whose peaks are 360 nm and 430 nm respectively. These emission bands are considered to be from two different emission centers. For $ZnO/Ga_2O_3$=49.3/50.7 or higher, 430 nm band is predominant and for $ZnO/Ga_2O_3$=49.2/50.8 or lower, 360nm band becomes predominant, whereas 430 nm band is almost completely suppressed. The shift of emission peak is though to be due to the change of the cation distribution with the zinc content in the spinel zinc gallate. Also, the emission centers responsible for the 360nm band are considered to be more efficient energy absorbers than the ones for the 430 nm band. Highly efficient green emitting phosphor was obtained by activating Zn-deficient zinc gallate with manganeses.

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References

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