首页> 外文OA文献 >THE SYNTHESIS, CHARACTERIZATION, AND UPCONVERTING PROPERTIES OF ERBIUM DOPED; YTTERBIUM, ERBIUM CO-DOPED YTTRIUM OXYSULFIDE PHOSPHORS UNDER 808, 980, AND 1560 nm EXCITATION
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THE SYNTHESIS, CHARACTERIZATION, AND UPCONVERTING PROPERTIES OF ERBIUM DOPED; YTTERBIUM, ERBIUM CO-DOPED YTTRIUM OXYSULFIDE PHOSPHORS UNDER 808, 980, AND 1560 nm EXCITATION

机译:掺RB的合成,表征和上转换性能;在808、980和1560 nm激发下的,、 CO共掺杂的三氧化二钇Y氧化物

摘要

Bulk yttrium oxysulfide phosphors were prepared using the polysulfide flux method. The morphology and structure was characterized using transmission electron microscopy and x-ray powdered diffraction. Visible emissions occurring near 530 and 550 nm and 660 - 670 nm consistent with the 2H11/2, 4S3/2 → 4I15/2 and 4F9/2 → 4I15/2 transitions, respectively, were observed under 808, 980, and 1560 nm excitation. The upconverting mechanisms excited at 808, 980, and 1560 nm have been investigated in detail. The power dependent behavior of the upconverted emission intensities for singly doped erbium phosphors excited at 808 and 980 nm indicated a two-photon excitation process. Likewise, the ytterbium and erbium co-doped phosphors excited at 980 nm also indicated a two-photon excitation process. Doping with 10% erbium showed the most intense emissions under 808 and 1560 nm excitation. Yttrium oxysulfide co-doped with 15% ytterbium and 3% erbium showed the most intense emissions under 980 nm excitation. Upon 1560 nm excitation, the intensity of the red emission band was significantly enhanced by co-doping erbium with ytterbium. Concentration quenching became apparent when either the concentration of erbium or ytterbium reached 20%.
机译:使用多硫化物助熔剂法制备了块状氧化硫钇荧光粉。使用透射电子显微镜和X射线粉末衍射来表征形态和结构。在808、980和1560 nm激发下观察到分别与2H11 / 2、4S3 / 2→4I15 / 2和4F9 / 2→4I15 / 2跃迁一致的,在530和550 nm和660-670 nm附近发生的可见发射。已经详细研究了在808、980和1560 nm激发的上转换机制。在808和980 nm激发的单掺杂磷光体的上转换发射强度的功率相关行为表明了双光子激发过程。同样,在980 nm激发的co和co共掺杂磷光体也表明了双光子激发过程。在808和1560 nm激发下掺杂10%的showed显示出最强的发射。掺有15%的and和3%的的氧化硫钇在980 nm激发下显示出最强的发射。在1560 nm激发下,by和co的共掺杂显着增强了红色发射带的强度。当either或or的浓度达到20%时,浓度淬灭变得明显。

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    Wilkins James;

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  • 年度 2011
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