Kumar Pawan, Singh Sitender, Gupta Isha, Kumar Vinod, Singh Devender
Department of Chemistry, Maharshi Dayanand University, Rohtak, India.
Department of Physics, Netaji Subash University of Technology, Sector 3, Dwarka, Delhi, India.
Luminescence. 2022 Nov;37(11):1932-1941. doi: 10.1002/bio.4377. Epub 2022 Sep 21.
A single-phase perovskite LaAlO :Dy phosphor was synthesized using a gel-combustion method at 600°C utilization with hexamethylenetetramine as a fuel. Further calcination of the samples was carried out (800 and 1000°C) to investigate the resultant effect on the crystalline and luminescence behaviour. The crystal structure had a cubic unit cell (space group Pm3̅m) and was examined using the Rietveld refinement and X-ray diffraction data. Additionally, Debye-Scherrer and Williamson-Hall equations were applied to determine other structural features. The particle size and morphology of phosphors were evaluated using transmission electron microscopy. Diffraction measurements were supported by the various metal-oxygen vibration modes studied with the help of Fourier transform infrared spectroscopy. Energy-dispersive X-ray analysis verified the chemical composition of synthesized sample. Luminescence spectra of the LaAlO :Dy phosphors exhibited intense bands for F → H (482 nm, bluish region) and F → H (574 nm, yellowish region) transitions. Commission Internationale de L'Eclairage and correlated colour temperature data confirmed the cool-white emission of the samples under ultraviolet light excitation. The interesting and advantageous luminescence characteristics of LaAlO :Dy phosphors make them potential materials for white light-emitting diodes.
采用凝胶燃烧法,以六亚甲基四胺为燃料,在600°C合成了单相钙钛矿LaAlO :Dy荧光粉。对样品进行进一步煅烧(800°C和1000°C),以研究其对晶体结构和发光行为的影响。晶体结构具有立方晶胞(空间群Pm3̅m),并使用Rietveld精修和X射线衍射数据进行了研究。此外,应用Debye-Scherrer和Williamson-Hall方程来确定其他结构特征。使用透射电子显微镜评估荧光粉的粒径和形貌。借助傅里叶变换红外光谱研究的各种金属-氧振动模式支持了衍射测量。能量色散X射线分析验证了合成样品的化学成分。LaAlO :Dy荧光粉的发光光谱在F→H(482nm,蓝光区域)和F→H(574nm,黄光区域)跃迁处呈现出强带。国际照明委员会和相关色温数据证实了样品在紫外光激发下的冷白色发射。LaAlO :Dy荧光粉有趣且有利的发光特性使其成为白光发光二极管的潜在材料。