Milićević Bojana, Chen Yingyuan, Li Junhao, Dramićanin Miroslav D, Zhou Jianbang, Wu Mingmei
School of Marine Sciences/School of Chemistry, Sun Yat-Sen University, Zhuhai 519082/Guangzhou 510275, P. R. China.
Vinca Institute of Nuclear Sciences - National Institute of the Republic of Serbia, University of Belgrade, PO Box 522, 11001 Belgrade, Serbia.
Dalton Trans. 2022 Jan 25;51(4):1378-1383. doi: 10.1039/d1dt03679c.
We report an organic solvent-assisted (OSA) co-precipitation strategy for the production of Mn-activated KTiF phosphor. The phosphor particle size was controlled through the selection of organic solvents with an alcohol functional group and different carbon chain lengths used in the synthesis. The synergistic effect of the organic solvent and hydrofluoric acid results in large smoothed hexagonal-shaped crystal sheets of particles that become larger as the carbon chain length of the organic solvent increases. The photoluminescence (PL) properties of KTiF:Mn powders strongly depend on the size and thickness of the particles. The addition of -butanol during the synthesis increases the emission intensity of KTiF:Mn by 208%. The PL quantum efficiency of phosphors prepared using the -butanol-assisted strategy is much higher (98.2%) than that of conventionally prepared phosphors (89.9%). Our findings demonstrate a way to prepare the KTiF:Mn phosphor with targeted morphology and very high quantum efficiency and also provide the route for the optimization of all Mn-activated fluoride phosphors used in white light-emitting diodes.
我们报道了一种用于制备锰激活的KTiF荧光粉的有机溶剂辅助(OSA)共沉淀策略。通过选择合成中使用的具有醇官能团和不同碳链长度的有机溶剂来控制荧光粉的粒径。有机溶剂和氢氟酸的协同作用导致形成大的、表面光滑的六边形晶体片状颗粒,随着有机溶剂碳链长度的增加,颗粒变得更大。KTiF:Mn粉末的光致发光(PL)特性强烈依赖于颗粒的尺寸和厚度。在合成过程中添加正丁醇可使KTiF:Mn的发射强度提高208%。使用正丁醇辅助策略制备的荧光粉的PL量子效率(98.2%)比传统制备的荧光粉(89.9%)高得多。我们的研究结果展示了一种制备具有目标形态和非常高量子效率的KTiF:Mn荧光粉的方法,也为优化用于白色发光二极管的所有锰激活氟化物荧光粉提供了途径。