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多层氧化铅基 X 射线探测器原型的比较分析。

Comparative Analysis of Multilayer Lead Oxide-Based X-ray Detector Prototypes.

机构信息

Physics Department, Lakehead University, Thunder Bay, ON P7B 5E1, Canada.

Institute for Nuclear Research, H-4026 Debrecen, Hungary.

出版信息

Sensors (Basel). 2022 Aug 11;22(16):5998. doi: 10.3390/s22165998.

Abstract

Lead oxide (PbO) photoconductors are proposed as X-ray-to-charge transducers for the next generation of direct conversion digital X-ray detectors. Optimized PbO-based detectors have potential for utilization in high-energy and dynamic applications of medical X-ray imaging. Two polymorphs of PbO have been considered so far for imaging applications: polycrystalline lead oxide (poly-PbO) and amorphous lead oxide (a-PbO). Here, we provide the comparative analysis of two PbO-based single-pixel X-ray detector prototypes: one prototype employs only a layer of a-PbO as the photoconductor while the other has a combination of a-PbO and poly-PbO, forming a photoconductive bilayer structure of the same overall thickness as in the first prototype. We characterize the performance of these prototypes in terms of electron-hole creation energy () and signal lag-major properties that define a material's suitability for low-dose real-time imaging. The results demonstrate that both X-ray photoconductive structures have an adequate temporal response suitable for real-time X-ray imaging, combined with high intrinsic sensitivity. These results are discussed in the context of structural and morphological properties of PbO to better understand the preparation-fabrication-property relationships of this material.

摘要

氧化铅 (PbO) 光电导材料被提议作为下一代直接转换数字 X 射线探测器的 X 射线到电荷转换器。经过优化的基于 PbO 的探测器有可能应用于医疗 X 射线成像的高能和动态领域。迄今为止,已经考虑了两种 PbO 多晶型物用于成像应用:多晶氧化铅 (poly-PbO) 和非晶氧化铅 (a-PbO)。在这里,我们提供了两种基于 PbO 的单像素 X 射线探测器原型的比较分析:一种原型仅使用一层 a-PbO 作为光电导材料,而另一种原型则结合了 a-PbO 和 poly-PbO,形成了与第一种原型相同总厚度的光电导双层结构。我们根据电子-空穴产生能量 ( ) 和信号滞后这两个主要特性来评估这些原型的性能,这些特性定义了材料在低剂量实时成像中的适用性。结果表明,两种 X 射线光电导结构都具有足够的时间响应能力,适合实时 X 射线成像,同时具有较高的固有灵敏度。这些结果在 PbO 的结构和形态特性的背景下进行了讨论,以便更好地理解这种材料的制备-制造-性能关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5bb6/9412672/7f8942ec2973/sensors-22-05998-g001.jpg

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