闪烁体
探测器
光电探测器
光电子学
光学
材料科学
有源矩阵
荧光粉
物理
X射线探测器
纳米技术
薄膜晶体管
图层(电子)
作者
Patric Büchele,Moses Richter,Sandro F. Tedde,Gebhard J. Matt,Genesis Ngwa Ankah,René Fischer,Markus Biele,Wilhelm Metzger,Samuele Lilliu,Oier Bikondoa,J. Emyr Macdonald,Christoph J. Brabec,Tobias Kraus,Uli Lemmer,O. Schmidt
出处
期刊:Nature Photonics
[Springer Nature]
日期:2015-11-09
卷期号:9 (12): 843-848
被引量:325
标识
DOI:10.1038/nphoton.2015.216
摘要
Medical X-ray imaging requires cost-effective and high-resolution flat-panel detectors for the energy range between 20 and 120 keV. Solution-processed photodetectors provide the opportunity to fabricate detectors with a large active area at low cost. Here, we present a disruptive approach that improves the resolution of such detectors by incorporating terbium-doped gadolinium oxysulfide scintillator particles into an organic photodetector matrix. The X-ray induced light emission from the scintillators is absorbed within hundreds of nanometres, which is negligible compared with the pixel size. Hence, optical crosstalk, a limiting factor in the resolution of scintillator-based X-ray detectors, is minimized. The concept is validated with a 256 × 256 pixel detector with a resolution of 4.75 lp mm−1 at a MTF = 0.2, significantly better than previous stacked scintillator-based flat-panel detectors. We achieved a resolution that proves the feasibility of solution-based detectors in medical applications. Time-resolved electrical characterization showed enhanced charge carrier mobility with increased scintillator filling, which is explained by morphological changes.
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