Sun Qi, Wang Shaoying, Devakumar Balaji, Li Bin, Sun Liangling, Liang Jia, Chen Daqin, Huang Xiaoyong
College of Physics and Optoelectronics, Taiyuan University of Technology Taiyuan 030024 P. R. China
College of Physics and Energy, Fujian Normal University Fuzhou Fujian 350117 P. R. China
RSC Adv. 2018 Nov 26;8(69):39307-39313. doi: 10.1039/c8ra08551j. eCollection 2018 Nov 23.
In this work, we reported on novel far-red-emitting SrGdAlO:Mn (SGA:Mn) phosphors towards application in plant growth lighting. The crystal structure and luminescence properties were investigated on the basis of X-ray diffraction, excitation and emission spectra, luminescence decay curves and temperature-dependent photoluminescence spectra. When excited by 353 nm, the SGA:Mn phosphors showed a far-red emission band in the 650-800 nm wavelength range with peaks at 709 and 725 nm, which was due to the E → A electron transition of Mn ion. The optimal Mn doping concentration was about 0.1 mol%. The CIE chromaticity coordinates of the SGA:0.1%Mn sample were (0.7064, 0.2934). The luminescence decay lifetimes decreased gradually from 1.263 to 0.868 ms with the increasing Mn concentrations. Notably, the emission band of SGA:0.1%Mn sample was well-matched with the absorption spectrum of phytochrome P, which indicated the SGA:Mn were potential far-red-emitting phosphors for plant growth applications.
在这项工作中,我们报道了用于植物生长照明的新型远红光发射SrGdAlO:Mn(SGA:Mn)荧光粉。基于X射线衍射、激发和发射光谱、发光衰减曲线以及温度相关的光致发光光谱对其晶体结构和发光性能进行了研究。当用353nm激发时,SGA:Mn荧光粉在650 - 800nm波长范围内呈现出一个远红光发射带,峰值位于709和725nm,这是由于Mn离子的E→A电子跃迁所致。最佳Mn掺杂浓度约为0.1mol%。SGA:0.1%Mn样品的CIE色度坐标为(0.7064, 0.2934)。随着Mn浓度的增加,发光衰减寿命从1.263ms逐渐降低至0.868ms。值得注意的是,SGA:0.1%Mn样品的发射带与植物色素P的吸收光谱良好匹配,这表明SGA:Mn是用于植物生长应用的潜在远红光发射荧光粉。