Wi Jung-Hyun, Park Sang-Geon, Shim Young-Seok, Lee Kwangjae, Jung Jae-Yong
Department of Smart Manufacturing Engineering, Changwon National University, Changwon 51140, Korea.
Department of Mechatronics Convergence Engineering, Changwon National University, Changwon 51140, Korea.
Materials (Basel). 2022 Nov 9;15(22):7917. doi: 10.3390/ma15227917.
A BaMoO:[Er]/[Yb] up-conversion (UC) phosphor was synthesized by co-precipitation and calcination of the precursor at 800 °C. The main peak (112) for the synthesized phosphor was strongly detected in the XRD pattern and had a tetragonal structure. The doping of rare-earth ions affected the crystal lattice by shifting the main peak, decreasing the lattice constant, and shifting the position of the Raman signal. The synthesized upconverted phosphor exhibited strong green signals at 530 and 553 nm and weak red signals at 657 nm when excited at 980 nm. The green light emission intensity of the UC phosphor increased as the pump power of the laser increased due to the two-photon effect. The synthesized upconverted phosphor was prepared as a pellet and flexible composite. Thermal quenching led to a decrease in luminescence intensity as the temperature increased, which means that the phosphor can be applied to optical temperature sensing.
通过共沉淀法合成前驱体并在800℃下煅烧,制备了一种BaMoO₄:[Er]/[Yb]上转换(UC)荧光粉。在XRD图谱中强烈检测到合成荧光粉的主峰(112),其具有四方结构。稀土离子的掺杂通过移动主峰、减小晶格常数和移动拉曼信号位置来影响晶格。当在980nm激发时,合成的上转换荧光粉在530和553nm处表现出强绿色信号,在657nm处表现出弱红色信号。由于双光子效应,随着激光泵浦功率的增加,UC荧光粉的绿光发射强度增加。将合成的上转换荧光粉制成颗粒和柔性复合材料。热猝灭导致发光强度随温度升高而降低,这意味着该荧光粉可应用于光学温度传感。