Medical Physics Unit, Cedars Cancer Centre, 1001 Boulevard Décarie, Montréal, Québec H4A 3J1, Canada.
Nanoscale. 2018 Apr 26;10(16):7821-7832. doi: 10.1039/c8nr01262h.
We report on the synthesis, characterization, and radioluminescence quantification of several new varieties of nanoparticles with the general composition β-NaLnF4, incorporating known luminescent activator/sensitizer pairs. Using Monte Carlo modeling to complement luminescence measurements, we have calculated the radioluminescence yields and intrinsic conversion efficiencies of colloidally-dispersed nanoparticles by comparison to an organic liquid scintillator. While five of the compositions had low to modest radioluminescence yields relative to bulk materials, colloidal β-Na(Lu0.65Gd0.2Tb0.15)F4 displayed a strong output of 39 460 photons per MeV absorbed, comparable to some of the best non-hygroscopic bulk crystal scintillators and X-ray phosphors such as Gd2O2S:Tb. Measurements of β-Na(Lu0.65Gd0.2Tb0.15)F4 powder samples revealed persistent luminescence as well as stable charge trapping, warranting further investigation.
我们报告了几种具有通式β-NaLnF4 的新型纳米粒子的合成、表征和辐射发光定量研究,其中包含了已知的发光激活剂/敏化剂对。通过与有机液体闪烁体进行比较,我们使用蒙特卡罗建模来补充发光测量,计算了胶体分散纳米粒子的辐射发光产率和固有转换效率。虽然五种组成的辐射发光产率相对于块状材料较低,但胶体β-Na(Lu0.65Gd0.2Tb0.15)F4 显示出强的输出,每吸收 1 MeV 吸收 39,460 个光子,可与一些最好的非吸湿块状晶体闪烁体和 X 射线磷光体如 Gd2O2S:Tb 相媲美。β-Na(Lu0.65Gd0.2Tb0.15)F4 粉末样品的测量显示出持续发光和稳定的电荷俘获,值得进一步研究。