探测器
光电子学
图像分辨率
光学
钙钛矿(结构)
材料科学
闪烁
光子计数
制作
X射线探测器
粒子探测器
光子
分辨率(逻辑)
物理
探测量子效率
微晶
量子效率
半导体
闪烁计数器
噪音(视频)
纳米激光器
奈奎斯特频率
钥匙(锁)
Crystal(编程语言)
单晶
量子点
薄膜
作者
Vitalii Bartosh,Kostiantyn Sakhatskyi,Gebhard J. Matt,Andrii Kanak,Aditya Bhardwaj,Lorenzo J.A. Ferraresi,Sergii Yakunin,Maksym V. Kovalenko
出处
期刊:Matter
[Elsevier BV]
日期:2026-01-23
卷期号:9 (2): 102600-102600
被引量:1
标识
DOI:10.1016/j.matt.2025.102600
摘要
The key asset of X-ray medical imaging lies in detecting fine features, governed by detector spatial resolution and high detection efficiency. Metal halide perovskites are emerging semiconductors with potential to exceed state-of-the-art direct-conversion and scintillation materials, featuring ∼10 lp mm −1 spatial resolution. Yet, integrating high-quality perovskite layers with readout arrays remains challenging. Here, we demonstrate fabrication of thick, large-grain polycrystalline CsPbBr 3 films by melting directly on pixelated glass interposers. The obtained array detectors show a remarkable 20 lp mm −1 intrinsic spatial resolution at MTF20, detection efficiency of 75.4%, and a low noise-equivalent dose of ∼46 photons for 22 keV X-rays under low reverse bias. These features enable unprecedented charge-integrating performance with 20% detective quantum efficiency at the Nyquist frequency. Single-pixel devices show single-photon counting of γ-radiation, resolving the 60 keV 241 Am peak. Melt-grown CsPbBr 3 films thus uniquely combine detection efficiency, scalability, and cost-effectiveness for next-generation low-dose, high-resolution X-ray imaging.
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