采用一种保温辅助(TIA)的燃烧合成工艺,高效、快捷地制备出了高性能Eu^(2+)掺杂的Ca-α-Si Al ON荧光粉。在传统的燃烧合成工艺的基础上,在反应物原料的外部包裹氮化硅保温层,显著阻碍了燃烧过程中的热量散失,使体系处于高温反应区的时...采用一种保温辅助(TIA)的燃烧合成工艺,高效、快捷地制备出了高性能Eu^(2+)掺杂的Ca-α-Si Al ON荧光粉。在传统的燃烧合成工艺的基础上,在反应物原料的外部包裹氮化硅保温层,显著阻碍了燃烧过程中的热量散失,使体系处于高温反应区的时间延长至原有工艺的3倍以上,从而促进了晶体的充分生长和发育。通过使用XRD、SEM、PL光谱等测试手段对产物进行全面分析,发现在使用了氮化硅保温层的样品中,产物为纯相的Ca-α-Si Al ON,颗粒的结晶良好,呈现等轴状形貌,粒径分布均匀。PL光谱测试表明,其在250~350 nm和350~450 nm区间内存在2个较宽的吸收带,在568 nm附近处有较强的黄光发射。包裹了氮化硅保温层后,产物的荧光性能有了明显改进,激发光谱和发射光谱的强度均有显著提高。展开更多
SiAlON phosphors doped with rare earths have attracted much attention on the application of light emitting diode(LEDs) benefitting from their outstanding thermal stability, chemical stability and broad emission band...SiAlON phosphors doped with rare earths have attracted much attention on the application of light emitting diode(LEDs) benefitting from their outstanding thermal stability, chemical stability and broad emission band properties. In this work, Eu-doped β-SiAlON green phosphors with composition Si(5.5)Al(0.5)O(0.5)N(7.5):0.035Eu^2+ were prepared by a highly efficient combustion synthesis(CS) method. The effect of comburent ratios(i.e., Si & Al) were systematically investigated by adjusting the starting compositions of reactants. It was confirmed that the ratios of Si and Al reactants had an intense influence on the phase composition, microstructure and photoluminescence properties of as-synthesized phosphors by directly determining the systematic energy in CS. The as-prepared β-SiAlON:Eu^2+ phosphors featured with high phase purity, uniform particle size of 3–5 μm, well-crystalline morphology and outstanding luminescent properties of green emission under UV or blue excitation were synthesized with 67.5 wt.% ratio of Si and no Al comburent.展开更多
Eu-doped Ca-α-SiAlON yellow phosphors, with the compositions Ca0.72Eu0.08Si9.56Al2.44O0.84N15.16, were prepared by a highly efficient combustion synthesis method. By optimizing the starting compositions of reactants ...Eu-doped Ca-α-SiAlON yellow phosphors, with the compositions Ca0.72Eu0.08Si9.56Al2.44O0.84N15.16, were prepared by a highly efficient combustion synthesis method. By optimizing the starting compositions of reactants and choosing appropriate post-annealing conditions, phase-pure, uniform and fine Ca-α-sialon:Eu2+ phosphors possessing the particle size ranging -3-5μm, and good luminescence properties with an intense emission band that peaks at 592 nm under n-UV or blue light excitation were ob-tained. The results indicated that combustion synthesis method was an energy efficient, time saving and low cost way to prepare Ca-α-SiAlON phosphors by controlling the mass ratio of comburents. A combination with post-annealing treatment was desired for further increase of the properties of Ca-α-SiAlON phosphors.展开更多
文摘采用一种保温辅助(TIA)的燃烧合成工艺,高效、快捷地制备出了高性能Eu^(2+)掺杂的Ca-α-Si Al ON荧光粉。在传统的燃烧合成工艺的基础上,在反应物原料的外部包裹氮化硅保温层,显著阻碍了燃烧过程中的热量散失,使体系处于高温反应区的时间延长至原有工艺的3倍以上,从而促进了晶体的充分生长和发育。通过使用XRD、SEM、PL光谱等测试手段对产物进行全面分析,发现在使用了氮化硅保温层的样品中,产物为纯相的Ca-α-Si Al ON,颗粒的结晶良好,呈现等轴状形貌,粒径分布均匀。PL光谱测试表明,其在250~350 nm和350~450 nm区间内存在2个较宽的吸收带,在568 nm附近处有较强的黄光发射。包裹了氮化硅保温层后,产物的荧光性能有了明显改进,激发光谱和发射光谱的强度均有显著提高。
基金Project supported by the National High Technology Research and Development Program of China(2015AA034601)
文摘SiAlON phosphors doped with rare earths have attracted much attention on the application of light emitting diode(LEDs) benefitting from their outstanding thermal stability, chemical stability and broad emission band properties. In this work, Eu-doped β-SiAlON green phosphors with composition Si(5.5)Al(0.5)O(0.5)N(7.5):0.035Eu^2+ were prepared by a highly efficient combustion synthesis(CS) method. The effect of comburent ratios(i.e., Si & Al) were systematically investigated by adjusting the starting compositions of reactants. It was confirmed that the ratios of Si and Al reactants had an intense influence on the phase composition, microstructure and photoluminescence properties of as-synthesized phosphors by directly determining the systematic energy in CS. The as-prepared β-SiAlON:Eu^2+ phosphors featured with high phase purity, uniform particle size of 3–5 μm, well-crystalline morphology and outstanding luminescent properties of green emission under UV or blue excitation were synthesized with 67.5 wt.% ratio of Si and no Al comburent.
基金Project supported by the National Natural Science Foundation of China(51302311)the National High Technology Research and Development Program of China(2009AA03Z211)
文摘Eu-doped Ca-α-SiAlON yellow phosphors, with the compositions Ca0.72Eu0.08Si9.56Al2.44O0.84N15.16, were prepared by a highly efficient combustion synthesis method. By optimizing the starting compositions of reactants and choosing appropriate post-annealing conditions, phase-pure, uniform and fine Ca-α-sialon:Eu2+ phosphors possessing the particle size ranging -3-5μm, and good luminescence properties with an intense emission band that peaks at 592 nm under n-UV or blue light excitation were ob-tained. The results indicated that combustion synthesis method was an energy efficient, time saving and low cost way to prepare Ca-α-SiAlON phosphors by controlling the mass ratio of comburents. A combination with post-annealing treatment was desired for further increase of the properties of Ca-α-SiAlON phosphors.