论文标题
从$α$ -AL $ _2 $ o $ $ _3 $提高的OSL排放量在Halloysite Nanocrystals存在下产生
Enhanced OSL emission from $α$-Al$_2$O$_3$ produced in the presence of halloysite nanocrystals
论文作者
论文摘要
本文通过燃烧方法开发了一种种子介导的合成,该合成使用haloysite纳米晶体作为种子,并分析了这些样品的剂量学特征,包括放射发光(RL),热发光(TL),以及光学上刺激的亮度(OSL)。 SEM图像和XRD都指向作用为异质成核种子的霍洛岛纳米管。 RL光谱表明由于前体的杂质而存在Cr $^{3+} $离子。但是,除了充当成核种子外,霍洛伊座纳米管仍然能够吸附Cr $^{3+} $离子,这证明了归因于Cr $^{3+} $发光中心的RL发射的减少。在增加Hnt含量以及RL数据后,TL强度降低,表明Cr $^{3+} $离子在TL发射过程中作为一个发光中心都有很大的参与。令人惊讶的是,具有HNT的样品显示高达6倍增强的OSL面积强度和69倍OSL初始强度增强,这表明,通过清除CR $^{3+} $,HNT消除了与OSL发射竞争的发光中心。因此,HNT有望提高$α$ -AL $ _2 $ o $ _3 $ dosimeters具有潜在应用在医学物理学中的敏感性,这表明Al $ _2 $ O $ _3 $中的Hnt存在降低了竞争中心的竞争中心的密度和OSL强度的增加。
This paper developed a seed-mediated synthesis of $α$-Al$_2$O$_3$ by the combustion method using halloysite nanocrystals as seeds and analyzed the dosimetric characteristics of these samples, including radioluminescence (RL), thermoluminescence (TL), and optically stimulated luminescence (OSL). Both SEM images and XRD pointed to the halloysite nanotubes acting as heterogeneous nucleation seeds. RL spectra indicate the presence of Cr$^{3+}$ ions due to impurities from the precursors. However, besides acting as nucleation seeds, the halloysite nanotubes were still able to adsorb the Cr$^{3+}$ ions, as evidenced by the decreased RL emission attributed to the Cr$^{3+}$ luminescent centers. Decreased TL intensity upon increasing HNT content together with the RL data suggested that the Cr$^{3+}$ ions have strong participation in the TL emission process as a luminescent center. Surprisingly, the samples with HNT showed up to 6-fold enhanced OSL area intensity and 69-fold OSL initial intensity enhancement, revealing that, by scavenging Cr$^{3+}$, the HNT eliminated a luminescent center that competes with the OSL emission. Therefore, HNTs are promising nanomaterial to enhance the sensitivity of $α$-Al$_2$O$_3$ dosimeters with potential application in medical physics, revealing that the presence of HNT in Al$_2$O$_3$ decreased the density of competing for luminescent centers and increased OSL intensity.