Premium
Fabrication and Scintillation Performance of Nonstoichiometric LuAG:Ce Ceramics
Author(s) -
Liu Shuping,
Feng Xiqi,
Nikl Martin,
Wu Lexiang,
Zhou Zhiwei,
Li Jiang,
Kou Huamin,
Zeng Yanping,
Shi Yun,
Pan Yubai
Publication year - 2015
Publication title -
journal of the american ceramic society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.9
H-Index - 196
eISSN - 1551-2916
pISSN - 0002-7820
DOI - 10.1111/jace.13305
Subject(s) - materials science , cerium , ceramic , analytical chemistry (journal) , doping , transparent ceramics , lutetium , microstructure , scintillation , mineralogy , absorption edge , luminescence , yttrium , optics , composite material , optoelectronics , metallurgy , oxide , band gap , chemistry , physics , chromatography , detector
Nonstoichiometric LuAG : Ce Ceramics ([ Lu (1– x ) Ce x ] 3 Al 5 O 12 , x = 0.005) with different excess of Lu 3+ were designed on the basis of Lu 2 O 3 ‐ Al 2 O 3 phase diagram and fabricated by a solid‐state reaction method. Without using any traditional sintering aids, pure phase and good optical performance were obtained in such a Lu ‐rich LuAG : Ce ceramics. In addition, scintillation efficiency and light yield of 1% excess of Lu 3+ ceramic sample were found 16 times and 1.82 times higher than that of commercial Bi 4 Ge 3 O 12 ( BGO ) single crystals, respectively. Such values are comparable or even better than those in most of LuAG : Ce single crystals. However, antisite defects were also induced by excess of Lu doping, whose luminescence was found at 350–410 nm in Lu ‐rich LuAG : Ce ceramics. The relationship of excess content of Lu and the microstructure, optical quality, and scintillation performance were clarified and discussed. Furthermore, by utilizing X‐ray absorption near edge spectroscopy technique, the charge state stability of cerium in Lu‐rich LuAG : Ce ceramics was examined. It appears that the excess of isovalence Lu 3+ doping has a negligible effect on the cerium valence instability and creation of stable Ce 4+ center.