State Research and Production Association "Optic, Optoelectronic and Laser techniques", 68 Nezavisimosti Ave., Minsk, Belarus.
B.I.Stepanov Institute of Physics of the National Academy of Sciences of Belarus, 68 Nezavisimosti Ave., Minsk, Belarus.
Luminescence. 2019 Aug;34(5):520-525. doi: 10.1002/bio.3670. Epub 2019 Jul 9.
The results are presented of a study of the photoluminescent (PL) properties of an undoped porous anodic alumina (PAA) and PAA doped with manganese ions. The PAA samples were prepared by anodization of aluminum. The effect of annealing conditions in vacuum on the PL spectra was studied for the first time and a comparative analysis was made with the spectra of the PAA annealed in air. Vacuum annealing was used to obtain oxygen-deficient alumina. A strong dependence of the PAA PL intensity on the annealing temperature in vacuum has been found: for the samples annealed at 600°С, the PL intensity is 15 times higher than that measured on the initial samples, whereas for the samples annealed in air it increases only 4.5-fold with excitation at the wavelengths of 275 nm. This is the result of the formation of a high concentration of oxygen vacancies during annealing in vacuum under conditions of oxygen deficiency as compared with the samples annealed in air, where diffusion of oxygen from air leads to a decrease in vacancies. A significant increase in the PL intensity permits consideration of the vacuum-annealed PAA as a promising material for dosimetry.
本研究旨在探讨未掺杂多孔阳极氧化铝(PAA)和掺杂锰离子的 PAA 的光致发光(PL)性能。PAA 样品通过铝阳极氧化制备。首次研究了真空退火条件对 PL 光谱的影响,并与在空气中退火的 PAA 光谱进行了对比分析。真空退火用于获得缺氧气相氧化铝。研究发现,PAA 的 PL 强度与真空退火温度强烈相关:在 600°C 下退火的样品的 PL 强度比初始样品高 15 倍,而在空气中退火的样品的 PL 强度仅在 275nm 波长激发时增加了 4.5 倍。这是由于在缺氧气相条件下真空退火形成了高浓度的氧空位,而在空气中退火时,氧从空气中扩散会导致空位减少。PL 强度的显著增加使得真空退火的 PAA 有望成为剂量测定的一种有前途的材料。