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紅橙藍發(fā)光Ce/Mn:Cd0.5Zn0.5B4O7材料和體系多重能量傳遞
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Red/Orange/Blue Luminescence Material Ce/Mn:Cd0.5Zn0.5B4O7 and Multiple Energy Transfer System
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    摘要:

    用高溫固相法首次制備出紅橙藍3種光發(fā)射為一體的(Cd0.38Ce0.06/Mn0.03)Zn0.5B4O7光致發(fā)光系列材料,由XRD測得(Cd0.38Ce0.06Mn0.03)Zn0.5B4O7的晶胞參數(shù)a、b、c分別為1.3959、0.8134、0.8658 nm, 屬于正交晶系, Pbca空間群。Ce/Mn:Cd0.5Zn0.5B4O7 的光譜顯示:由285、370、296 nm紫外光激發(fā),分別呈現(xiàn)Mn2+的4T1(4G)→6A1(6S) 和Ce3+的 5d→2F5/2, 2F7/2能級躍遷發(fā)射以及發(fā)射強度比相近的470和630 nm的復合光發(fā)射。當Ce3+和Mn2+共摻雜時它們互為激活劑和敏化劑。在熒光體Ce/Mn:Cd0.5Zn0.5B4O7中存在極少見的基質(zhì)、Ce3+ 和Mn2+的多重能傳遞,其中以Ce3+?Mn2+的雙向能量傳遞為主。助熔劑CaF2和KCl都能降低合成溫度和增加發(fā)光強度, 但對Ce3+和 Mn2+發(fā)射光譜有不同影響。

    Abstract:

    A series of photoluminescence materials of red-orange-blue three lights emission, Ce/Mn:Cd0.5Zn0.5B4O7 were prepared via a high-temperature solid-state method for the first time. The crystal system, point group and cell parameters of (Cd0.38Ce0.06/ Mn0.03)Zn0.5B4O7 were confirmed by X-ray diffraction. The phosphor belongs to orthorhombic crystal system with Pbca space group. Spectral characteristics of Ce/Mn:Cd0.5Zn0.5B4O7 indicate that excited by 285 nm UV, the emission mainly presents 4T1(4G)→6A1(6S) of Mn2+; excited by 370 nm UV, the emission is mainly 5d→2F5/2, 2F7/2 of Ce3+; excited by 296 nm UV, it shows compound light-emitting of 470 nm and 630 nm with similar emission intensity ratio. Ce3+ and Mn2+ co-exist, and they are the activator and the sensitizer of each other. In the phosphors Ce/MnCd0.5Zn0.5B4O7 there are multiple energy transfers among the host, Ce3+ and Mn2+, which are rarely found. The major energy transfer is Ce3+?Mn2+. Flux CaF2 and KCl can reduce the synthesis temperature and increase the luminous intensity, but they have different effects for Ce3+ and Mn2+ emission spectra

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王清珊,劉華芳,張彩慧,常樹嵐.紅橙藍發(fā)光Ce/Mn:Cd0.5Zn0.5B4O7材料和體系多重能量傳遞[J].稀有金屬材料與工程,2011,40(3):479~482.[Wang Qingshan, Liu Huafang, Zhang Caihui, Chang Shulan. Red/Orange/Blue Luminescence Material Ce/Mn:Cd0.5Zn0.5B4O7 and Multiple Energy Transfer System[J]. Rare Metal Materials and Engineering,2011,40(3):479~482.]
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  • 收稿日期:2010-03-25
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