Tang Wanjuan, Guo Qingfeng, Su Ke, Liu Haikun, Zhang Yuanyuan, Mei Lefu, Liao Libing
School of Gemmology, China University of Geosciences, Beijing 100083, China.
Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes, National Laboratory of Mineral Materials, School of Materials Sciences and Technology, China University of Geosciences, Beijing 100083, China.
Materials (Basel). 2022 Mar 15;15(6):2177. doi: 10.3390/ma15062177.
Whitlockite has the advantages of a low sintering temperature, high stability, and a low fabrication cost, and it is widely used as the host for luminescent material. In this study, CaLiLa(PO):xDy phosphor was prepared by the high-temperature solid-state method, and its structure, composition, and luminescence properties were systematically studied. The results showed that a new whitlockite type matrix was prepared by replacing Ca in whitlockite with monovalent and trivalent cations. The prepared phosphors belonged to a hexagonal crystal system with a particle size in the range of 5-20 μm. Under the excitation of 350 nm UV light, the samples emitted white light, and there were mainly two stronger emission peaks at 481 nm in the blue band and 573 nm in the yellow band, which correspond to the electron transitions at F→H and F→H of Dy, respectively. The optimal doping concentration of Dy in CaLiLa(PO) matrix was 0.03 (mol%). The main mechanism of concentration quenching in the sample was dipole-dipole energy transfer. When the temperature was 130 °C, the luminescence intensity of the samples was 78.7% of that at 30 °C, and their thermal quenching activation energy was 0.25 eV. The CIE coordinates of the sample at 30 °C were (0.2750, 0.3006), and their luminescent colors do not change with temperature. All the results indicate that CaLiLa(PO):xDy phosphor is a luminescent material with good luminescence performance and thermal stability, which shows a promising application in the field of LED display.
白磷钙矿具有烧结温度低、稳定性高和制造成本低的优点,并且被广泛用作发光材料的基质。在本研究中,通过高温固相法制备了CaLiLa(PO₄):xDy荧光粉,并对其结构、组成和发光性能进行了系统研究。结果表明,通过用一价和三价阳离子取代白磷钙矿中的Ca,制备了一种新型的白磷钙矿型基质。所制备的荧光粉属于六方晶系,粒径在5-20μm范围内。在350nm紫外光激发下,样品发出白光,在蓝光波段481nm和黄光波段573nm处主要有两个较强的发射峰,分别对应于Dy的F→H和F→H电子跃迁。Dy在CaLiLa(PO₄)基质中的最佳掺杂浓度为0.03(mol%)。样品中浓度猝灭的主要机制是偶极-偶极能量转移。当温度为130℃时,样品的发光强度为30℃时的78.7%,其热猝灭活化能为0.25eV。样品在30℃时的CIE坐标为(0.2750, 0.3006),其发光颜色不随温度变化。所有结果表明,CaLiLa(PO₄):xDy荧光粉是一种具有良好发光性能和热稳定性的发光材料,在LED显示领域具有广阔的应用前景。