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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Deep Ultraviolet Emitting Scintillators for Biomedical Applications: The Hard Way of Downsizing LuPO4:Pr3+
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Deep Ultraviolet Emitting Scintillators for Biomedical Applications: The Hard Way of Downsizing LuPO4:Pr3+

机译:深度紫外线发射生物医学应用的闪烁体:抑制Lupo4的艰难方式:PR3 +

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Pr3+-doped LuPO4 emits UV radiation between 225 and 280 nm, where DNA shows strong absorption bands. Therefore, a systematic study of the luminescence of Pr3+ doped LuPO4 is performed: Different doping concentrations, particles sizes, and excitation schemes (vacuum UV at 160 nm and X-rays 50 kV, 2 mA, tungsten target) are compared. The emission spectra in the UV range depends on the excitation energy and the particle size. Microcrystalline particles (6 mu m) comprising 1% Pr3+ display the highest emission intensity at 234 nm upon vacuum UV as well as X-ray excitation. Sub-microscale particles (20-50 nm) of LuPO4:Pr3+ (1%) show the same UV emission under X-ray excitation as the larger particles but do not emit under vacuum UV excitation. Colloidal nanoscale particles (5 nm) do not show emission in the UV-C range. Based on the high-density and strong X-ray absorption of LuPO4, the implementation of Pr3+ doped LuPO4 particles of suitable size (20-50 nm) could improve the well-established radiation therapy. Owing to the strong absorption and low penetration depth of UV-C radiation in biological tissue, Pr3+-doped LuPO4 particles located directly in cancerous tumors could allow for additional treatment with cell-damaging UV-C radiation.
机译:PR3 + - 掺杂LUPO4发射紫外线辐射在225和280nm之间,其中DNA显示出强吸收带。因此,进行了对PR3 +掺杂LupO4的发光的系统研究:比较了不同的掺杂浓度,颗粒尺寸和激发方案(在160nm处的真空UV和X射线50kV,2MA,钨靶)进行了蛋白质浓度。 UV范围内的发射光谱取决于激发能量和粒径。含有1%PR3 +的微晶颗粒(6μm)在真空UV以及X射线激发时显示234nm的最高发射强度。 LupO4的亚微米粒子(20-50nm):pr3 +(1%)在X射线激发下显示与较大颗粒相同的UV发射,但不在真空UV激发下发射。胶体纳米级粒子(5nm)在UV-C范围内不显示发射。基于LupO4的高密度和强X射线吸收,Pr3 +掺杂Lupo4颗粒的合适尺寸(20-50nm)的实施可以改善良好的放射疗法。由于生物组织中的UV-C辐射的强度和低渗透深度,PR3 +掺杂的Lupo4直接位于癌性肿瘤中的颗粒可允许用细胞损伤UV-C辐射进行额外的处理。

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