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反应物浓度对NaYF_4∶Yb^(3+),Tm^(3+)晶相的影响 被引量:11

Effect of Reactants Concentration on NaYF_4∶Yb^(3+),Tm^(3+) Crystalline Phase
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摘要 利用水热法,制备了具有不同形貌的NaYF4∶20%Yb3+,1%Tm3+上转换发光粒子。利用扫描电子显微镜、X射线衍射分析、发光光谱测量等手段对样品进行了形貌、晶相和发光性质的表征。结果表明,通过调控反应物的浓度,可以实现NaYF4基质从立方相到六角相的晶相转变。在980 nm红外光的激发下,六角相的NaYF4∶20%Yb3+,1%Tm3+上转换发光粒子发出蓝紫色可见光。通过分析反应物浓度对产物晶相的影响,为制备晶相可控的上转换发光材料提供了新的实验依据。 A series of NaYF4∶20%Yb3+,1%Tm3+ upconversion particles(UCPs) with different morphology were prepared by the facile hydrothermal approach.The morphology,crystalline phase and optical properties were characterized by scanning electron microscopy(SEM),X-ray diffraction(XRD) and luminescent spectra.XRD patterns and SEM images showed that the UCPs crystalline phase tansformed from cubic phase to hexagonal phase by controlling the reactants concentration.Pumped with 980 nm diode laser,the UCPs emitted bright violet/blue upconversion luminescence.By analyzing the effect of reactants concentration on the products crystalline phase,the crystal growth mechanism of NaYF4 was studied in detail.Significantly,our research work would provide more experimental data for controlling the crystalline phase of the upconversion luminescent materials.
出处 《发光学报》 EI CAS CSCD 北大核心 2011年第9期853-857,共5页 Chinese Journal of Luminescence
基金 吉林省科技发展计划项目(20110500 20100702) 吉林大学杰出青年科学基金项目(201005008) 吉林大学基本科研项目(200903078)资助
关键词 NAYF4 稀土 反应物浓度 晶相 上转换发光 NaYF4 rare earth reactants concentration crystalline phase upconversion
作者简介 陈喆(1987-),男,河南郑州人,主要从事稀土掺杂发光纳米材料的研究。E—mail:zzal6211@126.eom,Tel:(0431)85168241—8325。 通讯联系人;E-mail:wpqin@jlu.edu.cn,Tel:(0431)85168241-8325
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  • 1程丽红,曹望和,夏天.980nm激光激发下Er^(3+)和Yb^(3+)共掺杂氟氧玻璃的上转换发光[J].发光学报,2004,25(4):355-358. 被引量:30
  • 2杨魁胜,李岩,余朝义,卢利平,叶灿华,张希艳.Upconversion Luminescence Properties of Ho^(3+),Tm^(3+),Yb^(3+) Co-Doped Nanocrystal NaYF_4 Synthesized by Hydrothermal Method[J].Journal of Rare Earths,2006,24(6):757-760. 被引量:12
  • 3Downing E, Hesselink L, Raltson J, et al. A three-color, solid-state, three-dimensional display [J]. Science, 1996, 273 (5279) :1185-1189.
  • 4Chivian J S, Case W E, Edden D D. The photon avalanehe:A new phenomenon in Pr^3+ -based infrared quantum counters [J]. Appl. Phys. Lett., 1979, 35(2) :124-125.
  • 5Gregorkiewicz T, Thao D, Langer J. Direct spectral probing of energy storage in Si: Er by a free-electron laser [ J ]. Appl. Phys. Lett. ,1999, 75(26) :4121-4123.
  • 6Oomen M. Upconversion in fluoride glass-fibers [J]. Adv. Mater. , 1991, 3(7-8) :403-406.
  • 7Chan W, Nie S. Quantum dot bioconjugates for uhrasensitive nonisotopic detection [ J ]. Science, 1998, 281 (5385) : 2016-2018.
  • 8Garcia-Revilla S, Gemer P, Gudel H, et al. Yb^3 + -sensitized visible Ni^2+ photon upconversion in codoped CsCdBr3 and CsMgBr3[J]. Phys. Rev. A, 2005, 72(12):125111-1-9.
  • 9Huang S, Lai S, Lou L, et al. Upconversion in LaF3:Tm^3+ [J]. Phys. Rev. B, 1981,24(1) :59-63.
  • 10McCLain W M, Harris R A, Yao S M. Generalized Stokes-Mueller formalism for two-photon absorption, frequency doubling, and hyper-Raman scattering [J]. Phys. Rev. A, 1994, 49(3) :1999-2005.

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