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采用机械化学法制备的 Yb 和 Er 共掺杂 SrFCl 纳米荧光粉,用于上转换发光检测电离辐射。

Mechanochemically prepared SrFCl nanophosphor co-doped with Yb and Er for detecting ionizing radiation by upconversion luminescence.

机构信息

School of Physical, Environmental and Mathematical Sciences, The University of New South Wales, Canberra, ACT 2600, Australia.

出版信息

Nanoscale. 2017 Oct 26;9(41):15958-15966. doi: 10.1039/c7nr05108e.

Abstract

We report a novel method for detecting ionizing radiation by employing the phenomenon of upconversion luminescence. Nanocrystalline SrFCl:Yb/Er was prepared by ball-milling and characterized by powder X-ray diffraction (XRD), transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). The photoluminescence properties of nanocrystalline SrFCl:Yb, SrFCl:Er and SrFCl:Yb/Er before and after X-irradiation were investigated. The results demonstrate that both Yb and Er ions in the SrFCl host are reduced to their divalent state upon X-ray exposure. Under 980 nm infrared excitation, SrFCl:Yb/Er nanocrystals displayed efficient upconversion luminescence. The upconversion luminescence intensity gradually decreased with increasing X-irradiation in a double exponential fashion with rate constants of k = 0.08 Gy and k = 0.01 Gy. In comparison with other X-ray storage phosphors, the present system shows a much higher stability of stored information since it is not subject to photobleaching in the read-out process. This is the first report on detecting ionizing radiation by upconversion luminescence, with the potential for improved read-out performance over traditional storage phosphors. Possible applications of the present phosphor include bioimaging and in vivo cell-level X-ray dose monitoring.

摘要

我们报告了一种通过上转换发光现象检测电离辐射的新方法。通过球磨制备了纳米晶 SrFCl:Yb/Er,并通过粉末 X 射线衍射(XRD)、透射电子显微镜(TEM)和 X 射线光电子能谱(XPS)进行了表征。研究了纳米晶 SrFCl:Yb、SrFCl:Er 和 SrFCl:Yb/Er 在 X 射线辐照前后的光致发光性能。结果表明,SrFCl 基质中的 Yb 和 Er 离子在 X 射线照射下均还原为二价态。在 980nm 红外激发下,SrFCl:Yb/Er 纳米晶显示出高效的上转换发光。上转换发光强度随 X 射线辐照的增加而逐渐降低,双指数拟合的速率常数分别为 k=0.08Gy 和 k=0.01Gy。与其他 X 射线存储荧光粉相比,本体系由于在读取过程中不受光漂白的影响,存储信息的稳定性要高得多。这是首次报道通过上转换发光检测电离辐射,有望在读取性能上优于传统存储荧光粉。本荧光粉的潜在应用包括生物成像和体内细胞级 X 射线剂量监测。

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