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铕(Ⅲ)掺杂含氧磷酸镧纳米晶的燃烧法合成及其发光性质

Photoluminescence Properties of La3PO7∶Eu3+ Nanoparticles Synthesized by a Combustion Method

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【作者】 金叶秦伟平张继森王艳曹春燕张继双任新光朱培芬尉国栋王丽丽王国凤

【Author】 JIN Ye1,2, QIN Wei-ping3, ZHANG Ji-sen1, WANG Yan1,2, CAO Chun-yan1,2, ZHANG Ji-shuang1,2REN Xin-guang1, ZHU Pei-fen3, WEI Guo-dong3, WANG Li-li3, WANG Guo-feng3(1. Key Laboratory of Excited State Processes, Chinese Academy of Sciences, Changchun 130033, China;2. Graduate School of the Chinese Academy of Sciences, Beijing 100049, China;3. State Key Laboratory of Integrated Optoelectronics, College of Electronic Science & Engineering, Jilin University, Changchun 130012, China)

【机构】 中国科学院激发态物理重点实验室吉林大学电子科学与技术学院光电子学实验室吉林大学电子科学与技术学院光电子学实验室 吉林长春130033中国科学院研究生院北京100049吉林长春130012吉林长春130033吉林长春130033中国科学院研究生院

【摘要】 采用燃烧法合成了新型红色纳米发光材料La3PO7∶Eu3+,并用X射线粉末衍射对其结构进行了表征。XRD分析证实样品La3PO7为单斜相。测定了其激发光谱和发射光谱,光谱数据表明:对应于Eu3+的5D0→7F2跃迁的发射强度远大于5D0→7F1跃迁的发射强度,La3PO7∶Eu3+形成红色发光材料。推测是由于基质结构的不对称性,Eu3+在基质La3PO7中占据非对称中心的格位所致。在不同温度下退火后,发现退火温度越高,Eu3+的5D0→7F2跃迁辐射越强,表明样品结晶越好。

【Abstract】 Eu3+-doped oxyphosphate (La3PO7) nanoparticles were synthesized by a straightforward combustion method. The synthesis procedure is similar to that of preparing oxide nanomaterials by the combustion method, but here (NH4)2HPO4 is used in producing phosphate nanoparticles. Firstly, La(NO3)3 was prepared by putting appropriate molar rate La2O3 (1.5 mmol) and Eu2O3 into the thin HNO3, stirring to a transparent solution. Excess water was evaporated and made it condensed while heating to obtain the solid La(NO3)3. Then, put into 10 mL thin HNO3. At the same time, 0.1321 g (NH4)2HPO4 and 0.270 3 g Glycine were dissolved in deioned water (10 mL). Thirdly, the solution of (NH4)2HPO4 and glycine were added into that of the La(NO3)3 with vigorous stirring. The precursor solution was formed. Then, the precursor solution was heated until the white foam was obtained. The reaction took place in a few minutes and all the reactions happened in a wide-mouth beaker. A monoclinic lattice was verified in them by the investigation of X-ray diffraction (XRD). In the emission spectra of Eu3+, the 5D0→7F0 transition is often observed when Eu3+ is in low site symmetry because it is forbidden based on the group theory. The 5D0→7F1 transition is parity-allowed magnetic dipole transition, which is slightly affected by the symmetry of the Eu3+ site. The 5D0→7F2 transition is a parity forbidden electric dipole transition and strong emission only occurs in a non-inversion symmetry site. Under 254 nm excitation, La3PO7∶Eu3+ nanoparticles emitted mainly red fluorescence, assigned to the 5D0→7F2 transition of Eu3+ ions and revealed the Eu3+ ions occupied asymmetric sites in the oxyphosphate host. After annealing at different temperatures from 400 ℃ to 1 200 ℃, we found that the higher the annealing temperature, the better the samples crystallized and the bigger the intensity ratio of I(5D0-7F2)/I(5D0-7F1). In comparison with LaPO4∶Eu3+, an orange phosphor with stronger 5D0→7F1 emission, La3PO7∶Eu3+ has prominent red luminescence under the same excitation and maybe become a promising red phosphor for PDPs and Hg-free fluorescent lamp in the future.

【基金】 国家自然科学基金资助项目(10474096,50672030)
  • 【文献出处】 发光学报 ,Chinese Journal of Luminescence , 编辑部邮箱 ,2007年02期
  • 【分类号】O482.31
  • 【被引频次】16
  • 【下载频次】288
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