材料科学
闪烁体
钇
透明陶瓷
透射率
X射线
陶瓷
光电子学
光学
兴奋剂
氧化物
复合材料
探测器
冶金
物理
作者
Tao Ji,Ting Wang,Hao Li,Qingpeng Peng,Haitao Tang,Song Hu,Alexey N. Yakovlev,Yang Zhong,Xuhui Xu
标识
DOI:10.1002/adom.202102056
摘要
Abstract Scintillators, as the core materials for X‐ray imaging, have received great attention in radiation detection, security inspection, and biomedical applications. However, the current single crystal and thin film scintillators have encountered several issues, such as high cost, insufficient stability, and uneven distribution, which undoubtedly limit the development of high‐quality X‐ray imaging. Herein, the Y 3 Al 5 O 12 :Ce 3+ (YAG:Ce 3+ ) transparent ceramics (TCs), which presented a high transmittance of 82% and a steady‐state light yield of 24 600 photons MeV −1 , are prepared by the vacuum solid‐state reactive sintering method. The fabricated YAG:Ce 3+ TCs exhibit X‐ray imaging with an excellent spatial resolution (≈34.7 lp mm −1 ). Moreover, because of the structural stability of YAG:Ce 3+ TCs, long‐term stable work under X‐ray irradiation is realized successfully. This work indicates that the TC scintillators provide a new opportunity for the development of high‐quality X‐ray imaging.
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