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Volume 14 Issue 2
Oct.  2021
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Article Contents
Wu Yu, Tang Hong, Zhuge Xing. Energy Transfer in (La1-xGdx) OBr: Tb, Ce[J]. Chinese Journal of Engineering, 1992, 14(2): 271-276. doi: 10.13374/j.issn1001-053x.1992.02.024
Citation: Wu Yu, Tang Hong, Zhuge Xing. Energy Transfer in (La1-xGdx) OBr: Tb, Ce[J]. Chinese Journal of Engineering, 1992, 14(2): 271-276. doi: 10.13374/j.issn1001-053x.1992.02.024

Energy Transfer in (La1-xGdx) OBr: Tb, Ce

doi: 10.13374/j.issn1001-053x.1992.02.024
  • Received Date: 1991-11-18
    Available Online: 2021-10-16
  • Gd3+, Ce3+ and Tb3+ in (La1-xGdx OBr: Tb0.0075, Cey can be excited with different wavelengths in ultra-violet region. Ce3+ and Tb3+ radiate. No Gd3+ characteristic luminescence has been observed, yet the energy of excited Gd3+transfers to Ce3+ and Tb3+, thus contributes to their radiations conssque-rtly. Energy transfer may be reversible to some extent between Ce3+ and Tb3+. The existance of Gd changes the crystal field distribution makes some red shift of the Ce3+ excited band and causes more Tb3+5D3→Ce3+→Tb3+5D4 energy transfer. These energy transfer processes result in the strengthen of greenish luminescence to which the naked eye is most sensitive, also result in the improvements of temperature stability of both Ce3+ and Tb3+ luminescence.

     

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