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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation of white light emitting YVO4: Ln~(3+) and silica-coated YVO4:Ln~(3+) (Ln~(3+) = Eu~(3+), Dy~(3+), Tm~(3+)) nanoparticles by CTAB-butanol/hexane/water microemulsion route: Energy transfer and site symmetry studies
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Preparation of white light emitting YVO4: Ln~(3+) and silica-coated YVO4:Ln~(3+) (Ln~(3+) = Eu~(3+), Dy~(3+), Tm~(3+)) nanoparticles by CTAB-butanol/hexane/water microemulsion route: Energy transfer and site symmetry studies

机译:制备发射白光的YVO4:Ln〜(3+)和涂有二氧化硅的YVO4:Ln〜(3+)(Ln〜(3+)= Eu〜(3+),Dy〜(3+),Tm〜( 3+))通过CTAB /正丁醇/己烷/水微乳化途径的纳米颗粒:能量转移和位点对称性研究

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摘要

Lanthanide ions (Ln~(3+) = Eu~(3+), Dy~(3+), Tm~(3+)) doped YVO4 and silica coated YVO4:Ln~(3+) (YVO4:Ln~(3+) @SiO2) nanoparticles have been prepared by a microemulsion route using Cetyl trimethyl ammonium bromide (CTAB)-butanol/hexane/water. Average crystallite sizes of YVO4:Ln~(3+) annealed at 500 and 900 °C are found to be ~30 and ~80 nm, respectively. Successful coating of the silica on the YVO4:Ln~(3+) core could be observed by transmission electron microscopy. The silanol group (SiO-H) is present in silica coated samples (heated up to 500 °C) and acts as luminescence quencher. The luminescence intensity and lifetime of those samples were less than those of their counterpart core samples. This has been attributed to the multi-phonon relaxation arising from high vibrational energy of the silanol group (3750 cm~(-1)). When annealed up to 900 °C, both the luminescence intensity and the lifetime for silica coated systems increase significantly due to the loss of the silanol group, as well as the extent of reduction of surface non-radiative process at the core-shell formation. In case of triple doping (Ln~(3+) = Eu~(3+), Dy~(3+) and Tm~(3+)), the emission of Dy~(3+) is more than that of either Eu~(3+) or Tm~(3+). This has been related to the energy transfer from Dy~(3+) to Eu~(3+) or Tm~(3+). Interestingly, a significant difference in the asymmetric ratio of electric dipole allowed transition to magnetic dipole allowed transition was observed when different Ln~(3+) ions are doped in the same host. This observation has been explained on the basis of their full width at half maximum of the emission peak. Based on the Commission Internationale d'Eclairage (CIE) coordinates calculations, only Dy~(3+) and triple Ln~(3+) doped YVO4 samples have CIE coordinates close to the ideal white light values amongst the samples. These materials could be used as potential nanophosphors for white light-emitting diodes (LEDs) applications.
机译:掺杂镧系离子(Ln〜(3+)= Eu〜(3 +),Dy〜(3 +),Tm〜(3+))和二氧化硅涂层的YVO4:Ln〜(3+)(YVO4:Ln〜(使用十六烷基三甲基溴化铵(CTAB)/正丁醇/己烷/水通过微乳化途径制备了3 +)@ SiO2)纳米颗粒。发现在500和900°C退火的YVO4:Ln〜(3+)的平均微晶尺寸分别为〜30和〜80 nm。通过透射电子显微镜可以观察到二氧化硅在YVO4:Ln〜(3+)核上的成功包覆。硅醇基(SiO-H)存在于二氧化硅涂层的样品(加热至500°C)中,并用作发光猝灭剂。这些样品的发光强度和寿命小于对应的核心样品的发光强度和寿命。这归因于硅烷醇基团的高振动能(3750 cm〜(-1))引起的多声子弛豫。当退火至900°C时,由于硅烷醇基团的损失以及核-壳形成过程中表面非辐射过程的减少程度,二氧化硅涂层体系的发光强度和寿命都显着增加。在三重掺杂(Ln〜(3+)= Eu〜(3 +),Dy〜(3+)和Tm〜(3+))的情况下,Dy〜(3+)的发射大于任一者的发射。 Eu〜(3+)或Tm〜(3+)。这与从Dy〜(3+)到Eu〜(3+)或Tm〜(3+)的能量转移有关。有趣的是,当在同一主体中掺杂不同的Ln〜(3+)离子时,观察到电偶极允许跃迁与磁偶极允许跃迁的不对称比存在显着差异。已经基于它们在发射峰的最大最大值的一半处的全宽度来解释该观察。根据国际照明委员会(CIE)的坐标计算,只有Dy_(3+)和三重Ln〜(3+)掺杂的YVO4样品的CIE坐标接近样品中的理想白光值。这些材料可用作白光发光二极管(LED)应用的潜在纳米磷光体。

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