Zhang Dan, Zhang Taifang, Kurboniyon Mekhrdod, Wang Peng, Ma Chonggeng
School of Optoelectronic Engineering & CQUPT-BUL Innovation Institute, Chongqing University of Posts and Telecommunications, Chongqing 400065, PR China.
Postdoctoral Research Center of Chongqing Key Laboratory of Photoelectronic Information Sensing and Transmitting Technology, Chongqing University of Posts and Telecommunications, Chongqing 400065, China.
Inorg Chem. 2025 Jun 30;64(25):12792-12803. doi: 10.1021/acs.inorgchem.5c01718. Epub 2025 Jun 17.
A novel garnet-type phosphor, GdYLuAlGaO: Ce, was synthesized via a high-temperature solid-state reaction to address the demand for efficient green-emitting materials in solid-state lighting. By employing a cation substitution strategy (Y/Gd codoping), the photoluminescence performance was significantly enhanced: the quantum efficiency increased from 86.79 to 96.86%, accompanied by a tunable emission shift from yellow to green (560-520 nm). Moreover, the thermal stability at 423 K improved dramatically from 40.79 to 92.98%, surpassing those of commercial green phosphors. Structural and spectral analyses revealed that the optimized crystal field splitting and enhanced lattice rigidity, induced by cation substitution, effectively suppressed nonradiative transitions, thereby boosting both quantum efficiency and thermal stability. A prototype white light-emitting diode (WLED) fabricated with YLuAlGaO: Ce phosphor exhibited excellent performance, including a high color rendering index (Ra = 91), low correlated color temperature (CCT = 3043 K), and good color stability under varying driving currents. These findings highlight the significant promise of GdYLuAlGaO: Ce as a superior green-emitting phosphor for advanced WLED systems, providing a feasible pathway for designing outstanding thermal stability and color-tunable luminescent materials via cationic engineering.
通过高温固态反应合成了一种新型石榴石型荧光粉GdYLuAlGaO:Ce,以满足固态照明中对高效绿色发光材料的需求。通过采用阳离子取代策略(Y/Gd共掺杂),光致发光性能得到显著提高:量子效率从86.79%提高到96.86%,同时发射波长从黄色可调至绿色(560 - 520 nm)。此外,在423 K时的热稳定性从40.79%大幅提高到92.98%,超过了商用绿色荧光粉。结构和光谱分析表明,阳离子取代引起的优化晶体场分裂和增强的晶格刚性有效抑制了非辐射跃迁,从而提高了量子效率和热稳定性。用YLuAlGaO:Ce荧光粉制备的白光发光二极管(WLED)原型表现出优异的性能,包括高显色指数(Ra = 91)、低相关色温(CCT = 3043 K)以及在不同驱动电流下良好的颜色稳定性。这些发现突出了GdYLuAlGaO:Ce作为先进WLED系统中一种优异的绿色发光荧光粉的巨大潜力,为通过阳离子工程设计具有出色热稳定性和颜色可调的发光材料提供了一条可行途径。