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Effects of Ca Content on Formation and Photoluminescence Properties of CaAlSiN3:Eu2+ Phosphor by Combustion Synthesis

机译:燃烧合成中Ca含量对CaAlSiN3:Eu2 +荧光粉形成和发光性能的影响

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摘要

Effects of Ca content (in the reactant mixture) on the formation and the photoluminescence properties of CaAlSiN3:Eu2+ phosphor (CASIN) were investigated by a combustion synthesis method. Ca, Al, Si, Eu2O3, NaN3, NH4Cl and Si3N4 powders were used as the starting materials and they were mixed and pressed into a compact which was then wrapped up with an igniting agent (i.e., Mg + Fe3O4). The compact was ignited by electrical heating under a N2 pressure of ≤1.0 MPa. By keeping the molar ratios of Al and Si (including the Si powder and the Si in Si3N4 powder) both at 1.00 and that of Eu2O3 at 0.02, XRD (X-ray diffraction) coupled with TEM-EDS (transmission electron microscope equipped with an energy-dispersive X-ray spectroscope) and SAED (selected area electron diffraction) measurements show that AlN:Eu2+ and Ca-α-SiAlON:Eu2+ are formed as the major phosphor products when the Ca molar ratio (denoted by Y) is equal to 0.25 and AlN:Eu2+ and Ca-α-SiAlON:Eu2+ could not be detected at Y ≥ 0.75 and ≥1.00, respectively. CASIN (i.e., CaAlSiN3:Eu2+) becomes the only phosphor product as Y is increased to 1.00 and higher. The extent of formation of CASIN increases with increasing Y up to 1.50 and begins to decrease as Y is further increased to 1.68. While the excitation wavelength regions are similar at various Y, the emission wavelength regions vary significantly as Y is increased from 0.25 to 1.00 due to different combinations of phosphor phases formed at different Y. The emission intensity of CASIN was found to vary with Y in a similar trend to its extent of formation. The Ca and Eu contents (expressed as molar ratios) in the synthesized products were found to increase roughly with increasing Y but were both lower than the respective Ca and Eu contents in the reactant mixtures.
机译:通过燃烧合成方法研究了Ca含量(反应混合物中)对CaAlSiN3:Eu 2 + 荧光粉(CASIN)的形成和光致发光性能的影响。使用Ca,Al,Si,Eu2O3,NaN3,NH4Cl和Si3N4粉末作为原料,将它们混合并压制成压块,然后将其用点火剂(即Mg + Fe3O4)包裹起来。在≤1.0MPa的氮气压力下通过电加热点燃压块。通过保持Al和Si(包括Si粉和Si3N4粉中的Si)的摩尔比和Eu2O3的摩尔比均为1.00,XRD(X射线衍射)与TEM-EDS(配有电子显微镜的透射电子显微镜)耦合能量色散X射线光谱仪和SAED(选定区域电子衍射)测量表明,形成了AlN:Eu 2 + 和Ca-α-SiAlON:Eu 2 + 当Ca摩尔比(Y表示)等于0.25且AlN:Eu 2 + 和Ca-α-SiAlON:Eu 2 + 时,作为主要的荧光粉产物分别在Y≥0.75和≥1.00时无法检测到。随着Y增加到1.00或更高,CASIN(即CaAlSiN3:Eu 2 + )成为唯一的磷光体产品。 CASIN的形成程度随Y的增加而增加,直至1.50;随着Y进一步增加至1.68,CASIN的形成程度开始减少。尽管在不同的Y处激发波长区域相似,但由于在不同的Y处形成的磷光体相的不同组合,随着Y从0.25增加到1.00,发射波长区域发生了显着变化。发现CASIN的发射强度随Y的变化而变化。与其形成程度相似的趋势。发现合成产物中的Ca和Eu含量(以摩尔比表示)随Y的增加而大致增加,但均低于反应混合物中各自的Ca和Eu含量。

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