Chengxu Lin , Chenyu Li , Rui Liu , Xuning Zhang , Xingyue Liu , Bo Sun , Tielin Shi , Zhiyong Liu , Guanglan Liao
{"title":"利用共烧技术制备掺铟无铅 Cs3Cu2I5 包晶闪烁体,并将其应用于高分辨率 X 射线成像中","authors":"Chengxu Lin , Chenyu Li , Rui Liu , Xuning Zhang , Xingyue Liu , Bo Sun , Tielin Shi , Zhiyong Liu , Guanglan Liao","doi":"10.1016/j.sna.2024.115269","DOIUrl":null,"url":null,"abstract":"<div><p>The perovskite scintillators have been extensively studied recently for their merits of tunable emission spectra and simple preparation processes. However, the practical applications of perovskite scintillator-based X-ray image sensor are still impeded by inadequate radioluminescence, poor environmental stability, and low imaging resolution. Herein, we demonstrate a scalable co-firing method to fabricate high-quality lead-free Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> perovskite scintillator and an Indium (In)-doping strategy is introduced to enhance its radioluminescence performance at the same time. The In-doped Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> obtains a high PLQY of 77.9% and a relative light output of 53372 ph/MeV, which are 0.34 and 1.08 times higher than those of the undoped counterpart, respectively. The X-ray detection limit of the In:Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> can reach 150.55 nGy<sub>air</sub>/s, 36.53 times lower than the requirement for X-ray medical diagnosis. The synthesized scintillator also shows superior stability under continuous high dose X-ray irradiation of 6800 μGy<sub>air</sub>/s for 120 minutes, maintaining 95% of its initial radioluminescence intensity. Furthermore, a large-area (300 cm<sup>2</sup>) flexible perovskite scintillator film is prepared, which owns a much competitive resolution of 10 lp/mm and less distortion in X-ray imaging. This work provides a practical path for the wide application of perovskite scintillator in the field of X-ray detection and imaging in near future.</p></div>","PeriodicalId":4,"journal":{"name":"ACS Applied Energy Materials","volume":null,"pages":null},"PeriodicalIF":5.4000,"publicationDate":"2024-03-11","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Preparing the In-doped lead-free Cs3Cu2I5 perovskite scintillator by a co-firing technique for its application in high-resolution X-ray imaging\",\"authors\":\"Chengxu Lin , Chenyu Li , Rui Liu , Xuning Zhang , Xingyue Liu , Bo Sun , Tielin Shi , Zhiyong Liu , Guanglan Liao\",\"doi\":\"10.1016/j.sna.2024.115269\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>The perovskite scintillators have been extensively studied recently for their merits of tunable emission spectra and simple preparation processes. However, the practical applications of perovskite scintillator-based X-ray image sensor are still impeded by inadequate radioluminescence, poor environmental stability, and low imaging resolution. Herein, we demonstrate a scalable co-firing method to fabricate high-quality lead-free Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> perovskite scintillator and an Indium (In)-doping strategy is introduced to enhance its radioluminescence performance at the same time. The In-doped Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> obtains a high PLQY of 77.9% and a relative light output of 53372 ph/MeV, which are 0.34 and 1.08 times higher than those of the undoped counterpart, respectively. The X-ray detection limit of the In:Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> can reach 150.55 nGy<sub>air</sub>/s, 36.53 times lower than the requirement for X-ray medical diagnosis. 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引用次数: 0
摘要
近年来,人们对闪烁体进行了广泛的研究,因为它具有发射光谱可调、制备工艺简单等优点。然而,基于闪烁体的 X 射线图像传感器在实际应用中仍存在辐射不充分、环境稳定性差和成像分辨率低等问题。在本文中,我们展示了一种可扩展的共烧方法来制造高质量的无铅 Cs3Cu2I5 包晶闪烁体,并引入了铟(In)掺杂策略来同时提高其辐射发光性能。掺杂铟的 Cs3Cu2I5 可获得高达 77.9% 的 PLQY 和 53372 ph/MeV 的相对光输出,分别是未掺杂的 Cs3Cu2I5 的 0.34 倍和 1.08 倍。In:Cs3Cu2I5 的 X 射线探测极限可达 150.55 nGyair/s,比 X 射线医疗诊断要求低 36.53 倍。合成的闪烁体在 6800 μGyair/s 的连续高剂量 X 射线辐照 120 分钟后仍能保持 95% 的初始辐射强度,显示出卓越的稳定性。此外,还制备出了大面积(300 平方厘米)柔性过氧化物闪烁体薄膜,其分辨率高达 10 lp/mm,在 X 射线成像中的畸变更小。这项工作为包晶闪烁体在不久的将来广泛应用于 X 射线探测和成像领域提供了一条切实可行的途径。
Preparing the In-doped lead-free Cs3Cu2I5 perovskite scintillator by a co-firing technique for its application in high-resolution X-ray imaging
The perovskite scintillators have been extensively studied recently for their merits of tunable emission spectra and simple preparation processes. However, the practical applications of perovskite scintillator-based X-ray image sensor are still impeded by inadequate radioluminescence, poor environmental stability, and low imaging resolution. Herein, we demonstrate a scalable co-firing method to fabricate high-quality lead-free Cs3Cu2I5 perovskite scintillator and an Indium (In)-doping strategy is introduced to enhance its radioluminescence performance at the same time. The In-doped Cs3Cu2I5 obtains a high PLQY of 77.9% and a relative light output of 53372 ph/MeV, which are 0.34 and 1.08 times higher than those of the undoped counterpart, respectively. The X-ray detection limit of the In:Cs3Cu2I5 can reach 150.55 nGyair/s, 36.53 times lower than the requirement for X-ray medical diagnosis. The synthesized scintillator also shows superior stability under continuous high dose X-ray irradiation of 6800 μGyair/s for 120 minutes, maintaining 95% of its initial radioluminescence intensity. Furthermore, a large-area (300 cm2) flexible perovskite scintillator film is prepared, which owns a much competitive resolution of 10 lp/mm and less distortion in X-ray imaging. This work provides a practical path for the wide application of perovskite scintillator in the field of X-ray detection and imaging in near future.
期刊介绍:
ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.