Department of Physics, University of Free State, P.O. Box 339, Bloemfontein, ZA 9300, South Africa.
Department of Physics, University of Free State, P.O. Box 339, Bloemfontein, ZA 9300, South Africa.
Ultrason Sonochem. 2016 Jan;28:79-89. doi: 10.1016/j.ultsonch.2015.07.003. Epub 2015 Jul 2.
In this study, europium doped yttrium gadolinium (Y1.4Gd0.5Eu0.1O3) mixed oxide phosphors were synthesized by a sonochemical method at different growth temperatures (50°C, 100°C, 150°C and 200°C) for pure red light emission applications. The compositional identification, presence of dopants and the distribution of doping materials in the crystal lattice was studied by TOF-SIMS. The formation and growth mechanisms in the sonochemical synthesis of Y1.4Gd0.5Eu0.1O3 nanophosphors are discussed in detail. Different spectral and Judd-Ofelt parameters were estimated from photoluminescence data. Optical gain and efficiency parameters were calculated with the variation of synthesis environment and an efficient synthesis method to make good red emitting phosphors for solid-state lighting and display applications were proposed.
在这项研究中,通过声化学方法在不同生长温度(50°C、100°C、150°C 和 200°C)下合成了掺铕的钇镓(Y1.4Gd0.5Eu0.1O3)混合氧化物荧光粉,用于纯红光发射应用。通过飞行时间二次离子质谱(TOF-SIMS)研究了组成鉴定、掺杂剂的存在以及掺杂材料在晶格中的分布。详细讨论了声化学合成 Y1.4Gd0.5Eu0.1O3 纳米荧光粉的形成和生长机制。从光致发光数据中估算了不同的光谱和 Judd-Ofelt 参数。随着合成环境的变化和高效合成方法的计算,计算了光学增益和效率参数,提出了用于固态照明和显示应用的高效红色发射荧光粉的有效合成方法。