Zhang Dekai, Hu Xiaoyun, Jing Guangyin, Liu Enzhou, Fan Jun, Zhang Guodong, Hou Xun
J Nanosci Nanotechnol. 2014 May;14(5):3642-7. doi: 10.1166/jnn.2014.8023.
Activated silica matrix fluorescent materials doped with Al3+ and Eu2+ are prepared by sol-gel method. The effects of different atmospheres and annealing temperatures on luminescent properties are characterized by analysis techniques including X-ray diffraction, infrared spectroscopy and fluorescence spectra. When being excited at 281 nm wavelength, the fluorescent materials show a strong broad blue emission band, with the emission center at 430 nm and the FWHM of 56 nm. The results indicate that the blue emission is derived from 4f6 5d to 4f7 transition of the Eu2+ ions. Al3+ ion plays a key role in the process of deoxidization from Eu3+ to Eu2+. Al3+ and B3+ can enhance the blue-emission intensity. Also it is found that the highest luminescent intensity of the samples occurs in the sample Eu-03 annealed at 1150 degrees C in N2 atmosphere.
采用溶胶-凝胶法制备了掺杂Al³⁺和Eu²⁺的活性二氧化硅基质荧光材料。通过X射线衍射、红外光谱和荧光光谱等分析技术表征了不同气氛和退火温度对发光性能的影响。当在281nm波长激发时,荧光材料呈现出强烈的宽蓝光发射带,发射中心在430nm,半高宽为56nm。结果表明,蓝光发射源于Eu²⁺离子的4f⁶5d到4f⁷跃迁。Al³⁺离子在Eu³⁺脱氧为Eu²⁺的过程中起关键作用。Al³⁺和B³⁺可以增强蓝光发射强度。还发现样品在N₂气氛中1150℃退火的Eu-03样品发光强度最高。