首页> 外文期刊>Applied Physics A: Materials Science & Processing >Studying the luminescence efficiency of Lu2O3:Eu nanophosphor material for digital X-ray imaging applications
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Studying the luminescence efficiency of Lu2O3:Eu nanophosphor material for digital X-ray imaging applications

机译:研究Lu 2 O 3 :Eu纳米磷光材料在数字X射线成像应用中的发光效率

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Scintillator materials are widely used in X-ray medical imaging detector applications, coupled with available photoreceptors like radiographic film or photoreceptors suitable for digital imaging like a-Si, charge-coupled devises (CCD), complementary metal-oxide-semiconductors (CMOS) and GaAs). In addition, scintillators can be utilized in non-medical imaging detectors such as industrial detectors for non-destructive testing (NDT) and detectors used for security purposes (i.e. airport luggage control). Image quality and dose burden in the above applications is associated with the amount of optical photons escaping the scintillator as well as the amount of optical photons captured by the photoreceptor. The former is characterized by the scintillator efficiency and the latter by the spectral matching between the emission spectrum of the scintillator and the spectral response of the photoreceptor. Recently, a scintillator material, europium-activated lutetium oxide (Lu2O3:Eu), has shown improved scintillating properties. Lu2O3:Eu samples of compact nanocrystalline non-agglomerated powder were developed in our laboratory using homogeneous precipitation from a water-toluene solution in the presence of polyvinyl alcohol as a surfactant. In order to test their light-emission properties, experimental measurements under the excitation of X-ray spectra with X-ray tube voltages between 50 kVp and 140 kVp were performed. This range of applied voltages is appropriate for X-ray radiology, NDT and security applications. Lu2O3:Eu was evaluated with respect to output yield and spectral compatibility of digital imaging photoreceptors (CCD-based, CMOS-based, amorphous silicon a:Si flat panels, ES20 and GaAs). High light yield and spectral compatibility increase the performance of the medical detector and reduce the dose burden to the personnel involved. In addition a theoretical model was used to determine the values for the Lu2O3:Eu optical photon light propagation parameters. The inverse diffusion length was found to be equal to 33 cm2/g. In addition Lu2O3:Eu was found to match well with several photoreceptors capable of digital imaging (i.e. GaAs).
机译:闪烁体材料广泛用于X射线医学成像检测器应用中,并与现有的感光体(如X射线照相胶片)或适用于数字成像的感光体(如a-Si),电荷耦合器件(CCD),互补金属氧化物半导体(CMOS)和GaAs)。另外,闪烁体可用于非医学成像检测器中,例如用于无损检测(NDT)的工业检测器和用于安全目的(即,机场行李控制)的检测器。上述应用中的图像质量和剂量负担与逃逸到闪烁器的光子的数量以及由感光体捕获的光子的数量有关。前者的特征在于闪烁体的效率,后者的特征在于闪烁体的发射光谱与感光体的光谱响应之间的光谱匹配。近来,闪烁体材料euro活化的氧化((Lu 2 O 3 :Eu)具有改善的闪烁性能。 Lu 2 O 3 :在我们的实验室中,使用聚乙烯醇作为溶剂,从水-甲苯溶液中均匀沉淀,制备了紧凑的纳米晶体非团聚粉末的Eu样品。表面活性剂。为了测试它们的发光特性,在具有在50kVp和140kVp之间的X射线管电压的X射线光谱的激发下进行了实验测量。此施加电压范围适用于X射线放射学,无损检测和安全应用。对Lu 2 O 3 :Eu进行了数字成像感光器(基于CCD,基于CMOS,非晶硅a:Si平板)的产量和光谱兼容性方面的评估,ES20和G​​aAs)。高的光产量和光谱兼容性提高了医疗探测器的性能,并减轻了相关人员的剂量负担。此外,使用理论模型确定Lu 2 O 3 :Eu光学光子光传播参数的值。发现反向扩散长度等于33cm 2 / g。另外,发现Lu 2 O 3 :Eu与几种能够进行数字成像的感光器(即GaAs)非常匹配。

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