首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Investigation of the imaging characteristics of the Gd_2O_3:Eu nanophosphor for high-resolution digital X-ray imaging system
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Investigation of the imaging characteristics of the Gd_2O_3:Eu nanophosphor for high-resolution digital X-ray imaging system

机译:Gd_2O_3:Eu纳米磷光体用于高分辨率数字X射线成像系统的成像特性研究

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For possible applications in high-resolution medical image systems, we manufactured a Eu~(3+)-doped Gd_2O_3 nanophosphor using the low-temperature solution combustion method, and evaluated its performance as an image sensor. The structural and optical characteristics of the fabricated nanophosphor were investigated using field-emission scanning electron microscopy (FE-SEM), X-ray diffraction (XRD), photoluminescence spectrum (PL), and luminescence decay time measurements. From the FE-SEM and XRD results, we established that the fabricated nanophosphor was formed of spherical particles of about 30-40 nm, and confirmed that the particles agglomerated as the sintering temperature increases. From PL spectra, a strong peak appeared near 611 nm, and the luminescent intensity was seen to be affected by the doping concentration of Eu. Gd_2O_3:Eu nanophosphor particles have shown the highest luminescent efficiency at a Eu concentration of 5 wt%. In the luminescent decay time measurements, the mean decay time was about 2.3-2.6 ms, about two times longer than that of the general bulk phosphor, and affected by the of Eu-doping concentration. For the investigation of the imaging characteristics of the fabricated nanophosphor, we connected the Gd_2O_3:Eu nanophosphor film to a commercial CMOS image sensor, obtained the X-ray images and evaluated the modulation transfer function (MTF) as a function of the Eu concentration. We were able to obtain high-resolution X-ray images and found that the Eu concentration also influenced the imaging characteristics.
机译:为了在高分辨率医学图像系统中可能的应用,我们使用低温溶液燃烧方法制造了掺Eu〜(3+)的Gd_2O_3纳米磷光体,并评估了其作为图像传感器的性能。使用场发射扫描电子显微镜(FE-SEM),X射线衍射(XRD),光致发光光谱(PL)和发光衰减时间测量研究了制成的纳米磷光体的结构和光学特性。根据FE-SEM和XRD结果,我们确定所制备的纳米磷光体是由约30-40 nm的球形颗粒形成的,并证实了随着烧结温度的升高,该颗粒发生团聚。从PL光谱中,在611nm附近出现强峰,并且发光强度被Eu的掺杂浓度影响。 Gd_2O_3:Eu纳米磷光体颗粒在Eu浓度为5 wt%时显示出最高的发光效率。在发光衰减时间测量中,平均衰减时间约为2.3-2.6 ms,比普通体荧光粉的平均衰减时间长两倍,并且受Eu掺杂浓度的影响。为了研究制成的纳米磷光体的成像特性,我们将Gd_2O_3:Eu纳米磷光体膜连接到商用CMOS图像传感器,获得了X射线图像,并评估了Eu浓度的函数的调制传递函数(MTF)。我们能够获得高分辨率的X射线图像,并发现Eu浓度也影响成像特性。

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