Sakthivel Thangavel, Sun Liangling, Devakumar Balaji, Li Bin, Huang Xiaoyong
College of Physics and Optoelectronics, Taiyuan University of Technology Taiyuan 030024 P. R. China
RSC Adv. 2018 Sep 24;8(57):32948-32955. doi: 10.1039/c8ra06607h. eCollection 2018 Sep 18.
In this study, a series of Na(Gd Eu )BO (abbreviated as: NaGdBO:Eu; = 0, 0.05, 0.15, 0.35, 0.45, and 0.50) phosphors were synthesized by conventional solid state reaction approach. The structure and morphology of the as-prepared phosphors were studied by X-ray diffraction, scanning electron microscopy and elemental mapping. The results indicated that the phosphors had micro-size particles with monoclinic phases. The photoluminescence excitation and emission study indicated that the as-prepared phosphors could give rise to efficient red emissions under near-ultraviolet excitation. The optimal doping concentration of Eu ions was = 0.35, and the corresponding deduced critical distance ( ) was about 9.4 Å. The concentration quenching mechanism was dominated by energy-transfer among the Eu ions through dipole-dipole interactions. The calculated internal quantum efficiency of the NaGdBO:0.35Eu red phosphor was 70.8% and the color purity was as high as 99%. Furthermore, decay dynamics revealed that with the increase in the content of Eu, the lifetimes decreased due to the increase in non-radiative transition. Importantly, the present NaGdBO:0.35Eu phosphors also exhibited good thermal stability, and the emission intensity at 150 °C was about 56% of that at 30 °C. Furthermore, a warm white light-emitting diode (WLED) device was fabricated with commercial BaMgAlO:Eu blue phosphors, (Ba,Sr)(SiO):Eu green phosphors, and the as-prepared NaGdBO:0.35Eu red phosphors as well as a 395 nm LED chip. The device exhibited CIE coordinates of (0.4367, 0.3987), a high color rendering index (CRI = 92.2), a low correlated color temperature (CCT = 2960 K), and a luminous efficacy of 40.65 lm W. The observed results strongly indicate that the as-prepared NaGdBO:Eu phosphors may be used as the red emitting component in pc-WLEDs.
在本研究中,通过传统的固态反应法合成了一系列Na(Gd Eu )BO (缩写为:NaGdBO:Eu; = 0、0.05、0.15、0.35、0.45和0.50)荧光粉。采用X射线衍射、扫描电子显微镜和元素映射对所制备荧光粉的结构和形貌进行了研究。结果表明,这些荧光粉具有单斜相的微米级颗粒。光致发光激发和发射研究表明,所制备的荧光粉在近紫外激发下能产生高效的红色发射。Eu离子的最佳掺杂浓度为 = 0.35,相应推导的临界距离( )约为9.4 Å。浓度猝灭机制主要是通过偶极-偶极相互作用在Eu离子之间进行能量转移。计算得到的NaGdBO:0.35Eu红色荧光粉的内量子效率为70.8%,色纯度高达99%。此外,衰减动力学表明,随着Eu含量的增加,由于非辐射跃迁的增加,寿命缩短。重要的是,目前的NaGdBO:0.35Eu荧光粉还表现出良好的热稳定性,150 °C时的发射强度约为30 °C时的56%。此外,用商用BaMgAlO:Eu蓝色荧光粉、(Ba,Sr)(SiO):Eu绿色荧光粉、所制备的NaGdBO:0.35Eu红色荧光粉以及一个395 nm的LED芯片制作了一个暖白色发光二极管(WLED)器件。该器件的CIE坐标为(0.4367, 0.3987),具有高显色指数(CRI = 92.2)、低相关色温(CCT = 2960 K)和40.65 lm W的发光效率。观察结果强烈表明,所制备的NaGdBO:Eu荧光粉可作为pc-WLEDs中的红色发光组分。