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Synthesis of M1-3xAl2O4:Eu2+x/Dy3+ 2x(M^2+= Sr^2+, Ca^2+ and Ba^2+) phosphors with long-lasting phosphorescence properties via co-precipitation method 被引量:1
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作者 Jinkai Li Bin Liu +2 位作者 Qi Chen Yizhong Lu Zongming Liu 《Chemical Reports》 2019年第2期112-117,共6页
The long afterglow fluorescent material of M1-3xAl2O4:Eu2+ x/Dy3+2x(M2+= Sr2+, Ca2+ and Ba2+) phosphors are successfully synthesized by calcining precursor obtained via co-precipitation method at 1300oC for 4 h with r... The long afterglow fluorescent material of M1-3xAl2O4:Eu2+ x/Dy3+2x(M2+= Sr2+, Ca2+ and Ba2+) phosphors are successfully synthesized by calcining precursor obtained via co-precipitation method at 1300oC for 4 h with reducing atmosphere (20% H2 and 80% N2). The phase evolution, morphology and afterglow fluorescent properties are systematically studied by the various instruments of XRD, FE-SEM, PLE/PL spectroscopy and fluorescence decay analysis. The PL spectra shows that the Sr1-3xAl2O4:Eu2+x/Dy3+ 2x phosphors display vivid green emission at s519 nm (4f65d1!4f7 transition of Eu2+) with monitoring of the maximum excitation wavelength at s334 nm (8S7=2!6IJ transition of Eu2+), among which the optimal concentration of Eu2+ and Dy3+ is 15 at.% and 30 at.%, respectively. The color coordinates and temperature of Sr1-3xAl2O4:Eu2+ x/Dy3+ 2x phosphors are approximately at (s0.27, s0.57) and s6700 K, respectively. On the above basis, the M0:55Al2O4:Eu2+ 0:15/Dy3+ 0:3 (M2+= Ca2+ and Ba2+) phosphors is obtained by the same method. The PL spectra of these phosphors shows the strongest blue emission at s440 nm and cyan emission at s499 nm under s334 nm wavelength excitation, respectively, which are blue shifted comparing to Sr1??3xAl2O4:Eu2+ x/Dy3+ 2x phosphors. The color coordinates and temperatures of M0:55Al2O4:Eu2+ 0:15/Dy3+ 0:3 (M2+= Ca2+ and Ba2+) phosphors are approximately at (s0.18, s0.09), s2000 K and (s0.18, s0.42), s11600 K, respectively. In this work, long afterglow materials of green, blue and cyan aluminates phosphors with excellent properties have been prepared, in order to obtain wide application in the field of night automatic lighting and display. 展开更多
关键词 long AFTERGLOW material co-precipitation method M1-3xAl2O4:Eu2+ x/Dy3+ 2x(M2+= Sr2+ Ca2+ and ba2+) PHOSPHORS luminescent property
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基于液体闪烁能谱分析方法的环境水中^(228)Ra检测研究 被引量:2
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作者 夏明明 於国兵 +5 位作者 闻德运 顾先宝 王元 梁永广 吴其反 陈志 《核技术》 CAS CSCD 北大核心 2019年第3期27-32,共6页
为了解决环境水中低活度^(228)Ra分析难题,采用Ba(Ra)SO_4共沉淀法载带水中^(228)Ra的浓缩方法,利用原子吸收光谱法(Atomic Absorption Spectroscopy,AAS)测量稳定Ba元素来确定载带下^(228)Ra的回收率;使用超低本底液体闪烁谱仪(Liquid ... 为了解决环境水中低活度^(228)Ra分析难题,采用Ba(Ra)SO_4共沉淀法载带水中^(228)Ra的浓缩方法,利用原子吸收光谱法(Atomic Absorption Spectroscopy,AAS)测量稳定Ba元素来确定载带下^(228)Ra的回收率;使用超低本底液体闪烁谱仪(Liquid Scintillation Spectrometer,LSC)测量Ra浓缩后的样品,从而获得低活度水平下比较精确的分析结果。Ba(Ra)SO_4共沉淀法载带得到的^(228)Ra的回收率在59%~90%范围内,^(228)Ra的探测限为7.9 mBq·L^(-1)(1 L水样,测量时间t=20 h)。利用原子吸收光谱法与133Ba示踪测量的回收率,两者相对偏差在7%以内。LSC对~(^(228))Ra/^(228)Ac的探测效率为72.9%,加标水样测量结果的相对偏差为1.0%~10%。此方法可实现水中低活度^(228)Ra的较精确测量。 展开更多
关键词 228ra 液体闪烁谱仪 ba(ra)so4共沉淀法 回收率 原子吸收光谱法
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