Microtron Accelerator Laboratory, Department of Physics, Savitribai Phule Pune University, Pune, 411007, MH, India.
Department of Physics, Rayat Shikshan Sanstha's Dada Patil Mahavidyalaya, Karjat, 414402, MH, India.
Phys Chem Chem Phys. 2022 May 11;24(18):11137-11150. doi: 10.1039/d2cp00946c.
Hexagonal phase sodium yttrium fluoride activated with lanthanide ions; Tb, Eu and Dy doped NaYF phosphors were synthesized using a simplistic hydrothermal method. The photoluminescence studies demonstrated green, red and blue emission lines corresponding to D → F ( = 6, 5, 4, 3), D → F ( = 1, 2 and 4) and F to H ( = 15/2 and 13/2) transitions, which are characteristic of Tb, Eu and Dy ions, respectively. The as-synthesized samples were subjected to annealing at varying temperatures from 500 °C to 800 °C primarily for the optimization of the thermoluminescence glow curve. Meanwhile, we studied the influence of thermal annealing treatment on the crystal phase, morphological features, and photoluminescence properties of the phosphors. The spherical-like morphology of NaYF:Tb phosphor changed to micro block-like structures and the hexagonal phase of NaYF transforms into a cubic phase at a higher annealing temperature of ∼800 °C. The photoluminescence emission intensity also varied at different annealing temperatures. The systematic study using different dopants and annealing temperatures was carried out to accomplish efficient thermoluminescence (TL) properties. The most suitable TL dosimetric glow peak was attained for NaYF:0.5%Tb phosphor, which was annealed at a temperature of 800 °C, located at 194 °C. The NaYF:Tb phosphor exhibited TL response fairly linear in the dose range from 1 kGy to 25 kGy of gamma radiation. The phosphor showed TL response at higher doses, which stipulates that the NaYF:Tb is reasonably well suitable for high dose measurements and respective applications. The phosphor exhibited negligible fading and good reproducibility features. Trap-level analysis and experimental determination of activation energy were performed using the - technique and initial rise method (IRM). The trapping parameters of the TL glow curve, such as activation energy (), order of kinetics (), and frequency factor () were estimated by Chen's glow peak shape (PS) method and glow curve deconvolution (GCD) method. The trapping parameters obtained using the IRM, PS and GCD methods are in good accordance with each other. Henceforth, along with efficient photoluminescence properties, the NaYF:Tb phosphor exhibited favorable thermoluminescence dosimetric properties. Consequently, this study provides new opportunities for utilizing these phosphors in the area of radiation dosimetry applications such as environmental and food monitoring, space dosimetry .
六方相的掺镧钇钠氟激活钠离子; 使用简单的水热法合成了 Tb、Eu 和 Dy 掺杂的 NaYF 荧光粉。光致发光研究表明,对应于 D→F(=6、5、4、3)、D→F(=1、2 和 4)和 F 到 H(=15/2 和 13/2)跃迁的绿色、红色和蓝色发射线,分别为 Tb、Eu 和 Dy 离子的特征。将合成的样品在 500°C 至 800°C 的不同温度下进行退火,主要是为了优化热致发光发光曲线。同时,我们研究了热退火处理对荧光粉的晶体相、形貌特征和光致发光性能的影响。在较高的退火温度约 800°C 下,NaYF:Tb 荧光粉的球形形貌变为微块状结构,六方相的 NaYF 转变为立方相。在不同的退火温度下,光致发光发射强度也发生了变化。通过使用不同的掺杂剂和退火温度进行系统研究,以实现高效的热致发光(TL)性能。在 800°C 退火温度下,获得了最适合的 TL 剂量计发光峰,位于 194°C。NaYF:0.5%Tb 荧光粉在 1 kGy 至 25 kGy 的γ辐射剂量范围内表现出相当线性的 TL 响应。该荧光粉在较高剂量下表现出 TL 响应,这表明 NaYF:Tb 非常适合高剂量测量及其应用。该荧光粉表现出轻微的褪色和良好的重现性特征。使用-技术和初始上升法(IRM)进行陷阱能级分析和激活能的实验测定。通过陈的发光峰形状(PS)法和发光曲线反卷积(GCD)法,估计 TL 发光曲线的陷阱参数,如激活能(E)、动力学阶数(n)和频率因子(S)。通过 IRM、PS 和 GCD 方法获得的陷阱参数彼此非常一致。因此,除了高效的光致发光性能外,NaYF:Tb 荧光粉还表现出良好的热致发光剂量学性能。因此,本研究为这些荧光粉在环境和食品监测、空间剂量学等辐射剂量学应用领域的应用提供了新的机会。