离子
辐射
辐照
电离辐射
纳米晶
辐射损伤
光电子学
信息存储
化学
材料科学
X射线
纳米技术
计算机科学
物理
有机化学
光学
数据库
核物理学
作者
Haozhe Liu,Longchao Guo,Zhenzhen Cui,Guo‐Qiang Zeng,Lan Lŭ,Xuanyu Zhu,Songcheng Peng,Yue Yang,Mao Deng,Jianbei Qiu,Xuhui Xu,Feng Zhao,Xue Yu,Ting Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-02-29
卷期号:24 (10): 3282-3289
被引量:4
标识
DOI:10.1021/acs.nanolett.4c00465
摘要
X-ray radiation information storage, characterized by its ability to detect radiation with delayed readings, shows great promise in enabling reliable and readily accessible X-ray imaging and dosimetry in situations where conventional detectors may not be feasible. However, the lack of specific strategies to enhance the memory capability dramatically hampers its further development. Here, we present an effective anion substitution strategy to enhance the storage capability of NaLuF4:Tb3+ nanocrystals attributed to the increased concentration of trapping centers under X-ray irradiation. The stored radiation information can be read out as optical brightness via thermal, 980 nm laser, or mechanical stimulation, avoiding real-time measurement under ionizing radiation. Moreover, the radiation information can be maintained for more than 13 days, and the imaging resolution reaches 14.3 lp mm–1. These results demonstrate that anion substitution methods can effectively achieve high storage capability and broaden the application scope of X-ray information storage.
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