Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5403874 | Journal of Luminescence | 2007 | 4 Pages |
Abstract
Gd3+-doped (Y0.995Ce0.005)2SiO5 powder was synthesized by solid-state reaction. Morphology of (Y0.995Ce0.005)2SiO5 particles changed from an irregular shape to a regular shape of bottle-neck with the doping of Gd3+. Gd3+ substituting Y3+ in (Y0.995Ce0.005)2SiO5 resulted in obvious particle size reduction. The minimum degree of particle size became larger with increasing Gd3+ content; at the same time, the particle surface became smoother. XPS measurements indicated that Gd3+ inclined to locate at positions near particle surface. PL intensity of (Y0.995Ce0.005)2SiO5 decreased with the doping of Gd3+; however, CL intensity increased. The mechanism of the relative intensity change was discussed. Also, particle shape of (Y0.995Ce0.005)2SiO5 did not change when other rare earths such as La3+, Sc3+ and Lu3+ were doped in.
Keywords
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Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Huan Jiao, Xiaojuan Wang, Shi Ye, Xiping Jing,