闪烁
异质结
超短脉冲
探测器
光电子学
材料科学
光学
物理
激光器
作者
Nataliya Babayevska,Mariusz Jancelewicz,Igor Iatsunskyi,Marcin Jarek,Ivan Yakymenko,Padmanaban Annamalai,O. Viahin,Giulia Terragni,Carsten Lowis,E. Auffray,O. Sidletskiy
出处
期刊:Crystals
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-19
卷期号:15 (9): 820-820
标识
DOI:10.3390/cryst15090820
摘要
Developing detectors to enhance the timing resolution of positron emission tomography scanners can help reduce radioactive doses absorbed by patients and improve spatial resolution in medical imaging. Time resolution may be enhanced in heterostructures comprising a heavy scintillator for attenuation of 511 keV γ-quanta, as well as a fast scintillator converting recoiled electrons from the heavy scintillator to prompt light photons. In this study, ZnO films as fast scintillators with different thicknesses were obtained on substrates of a heavy bismuth germanate (Bi4Ge3O12, BGO) scintillator using several film preparation techniques, such as spray-coating, drop-casting, and spin-coating. The design of heterostructures combined the key advantage of a low-cost film preparation technique with environmentally friendly and available precursors. This work proposes synthesis methods of highly nanocrystalline ZnO films on BGO, where a film thickness ranges from 6 to 18 μm. All ZnO studied films exhibit exciton luminescence peaked in UV (353 nm) and defect luminescence in the green (657 nm) range under 325 nm excitation. The best coincidence time resolution of 158 ± 8 ps was obtained with BGO@ZnO heterostructures fabricated by the spray-coating. The proposed approach allowed obtaining BGO@ZnO heterostructures for potential use as ultrafast scintillation detectors.
科研通智能强力驱动
Strongly Powered by AbleSci AI