Van der Heggen David, Cooper Daniel R, Tesson Madeleine, Joos Jonas J, Seuntjens Jan, Capobianco John A, Smet Philippe F
LumiLab, Department of Solid State Sciences, Ghent University, Krijgslaan 281-S1, 9000 Gent, Belgium.
Medical Physics Unit, McGill University, Cedars Cancer Centre, 1001 Décarie Blvd, Montreal, QC H4A 3J1, Canada.
Nanomaterials (Basel). 2019 Aug 5;9(8):1127. doi: 10.3390/nano9081127.
In this work we report on the thermoluminescence (TL) and optically stimulated luminescence (OSL) properties of β-Na(Gd,Lu)F:Tb nanophosphors prepared via a standard high-temperature coprecipitation route. Irradiating this phosphor with X-rays not only produces radioluminescence but also leads to a bright green afterglow that is detectable up to hours after excitation has stopped. The storage capacity of the phosphor was found to be (2.83 ± 0.05) × 10 photons/gram, which is extraordinarily high for nano-sized particles and comparable to the benchmark bulk phosphor SrAlO:Eu,Dy. By combining TL with OSL, we show that the relatively shallow traps, which dominate the TL glow curves and are responsible for the bright afterglow, can also be emptied optically using 808 or 980 nm infrared light while the deeper traps can only be emptied thermally. This OSL at therapeutically relevant radiation doses is of high interest to the medical dosimetry community, and is demonstrated here in uniform, solution-processable nanocrystals.
在这项工作中,我们报道了通过标准高温共沉淀法制备的β-Na(Gd,Lu)F:Tb纳米磷光体的热释光(TL)和光激发发光(OSL)特性。用X射线照射这种磷光体不仅会产生辐射发光,还会导致明亮的绿色余辉,在激发停止数小时后仍可检测到。发现该磷光体的存储容量为(2.83±0.05)×10光子/克,对于纳米尺寸的颗粒来说非常高,与基准块状磷光体SrAlO:Eu,Dy相当。通过将TL与OSL相结合,我们表明,相对较浅的陷阱主导了TL发光曲线并导致明亮的余辉,这些陷阱也可以使用808或980 nm红外光进行光清空,而较深的陷阱只能通过热清空。在治疗相关辐射剂量下的这种OSL引起了医学剂量学界的高度关注,并且在此处的均匀、可溶液处理的纳米晶体中得到了证明。