Department of Physics, Govt. V.Y.T. Post Graduate Autonomous College Durg, Chhattisgarh, India.
Department of Physics, University Institute of Sciences, Chandigarh University, Mohali, India.
Luminescence. 2021 Sep;36(6):1507-1512. doi: 10.1002/bio.4095. Epub 2021 Jun 20.
Here, we report the photoluminescence and thermoluminescent properties of Dy-activated Ca ZnSi O phosphors synthesized using the solid-state method. The synthesized phosphors showed hardystonite type structure, and had micron-sized particles. Fourier transform infrared spectroscopy (FTIR) showed the existence of the functional groups and confirmed the formation of phosphor and photoluminescence techniques. The phosphors under excitation at 239 nm exhibited green-yellow emission spectra in the region 481-575 nm corresponding to the F → H and F → H transitions of Dy ions. The Commission Internationale de l'Eclairage (CIE) coordinates were achieved to be (0.25, 0.27), which was narrowly close to the white region. Thermoluminescence (TL) glow curve analysis of prepared Dy -activated Ca ZnSi O phosphors were recorded for different ultraviolet (UV) light exposure times and found to have a linear response with dose. The TL glow curves, recorded with various UV exposure times ranging from 5 to 25 min, showed a linear response with dosage. The corresponding kinetic parameters were also calculated using a computerized glow curve deconvolution (CGCD) technique. Activation energy was observed to enhance the increase in the peak temperature and its value was substantially higher for the third peak fitted using CGCD. The obtained results indicated that the synthesized pristine phosphors could be potentially used for lighting, displays, and dosimetric applications.
在这里,我们报告了使用固态法合成的掺镝的 CaZnSiO 荧光粉的发光和热致发光性能。合成的荧光粉呈现硬硅钙石型结构,具有微米级颗粒。傅里叶变换红外光谱(FTIR)显示了功能基团的存在,并证实了荧光粉的形成和光致发光技术。在 239nm 的激发下,荧光粉在 481-575nm 区域表现出绿色-黄色发射光谱,对应于 Dy 离子的 F→H 和 F→H 跃迁。国际照明委员会(CIE)坐标达到(0.25,0.27),接近白色区域。对不同紫外线(UV)照射时间制备的掺镝 CaZnSiO 荧光粉的热致发光(TL)发光曲线进行了分析,发现与剂量呈线性关系。记录的 TL 发光曲线,在 5 到 25 分钟的不同 UV 照射时间范围内,与剂量呈线性关系。还使用计算机化的发光曲线解卷积(CGCD)技术计算了相应的动力学参数。观察到激活能随着峰值温度的升高而增强,而使用 CGCD 拟合的第三个峰的值要高得多。所得结果表明,合成的原始荧光粉可潜在用于照明、显示和剂量应用。