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纳米结构的CaWO4、CaWO4 : Pb2+和CaWO4 : Tb3+颗粒:多元醇介导的合成及发光性质。

Nanostructured CaWO4, CaWO4 : Pb2+ and CaWO4 : Tb3+ particles: polyol-mediated synthesis and luminescent properties.

作者信息

Wang Zhenling, Lil Guangzhi, Quan Zewei, Kong Deyan, Liu Xiaoming, Yu Min, Lin Jun

机构信息

Key Laboratory of Rare Earth Chemistry and Physics, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022.

出版信息

J Nanosci Nanotechnol. 2007 Feb;7(2):602-9.

Abstract

Nano-submicrostructured CaWO4, CaWO4 : Pb2+ and CaWO4 : Tb3+ particles were prepared by polyol method and characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), transmission electron microscopy (TEM), Fourier transform infrared spectra (FT-IR), thermogravimetry-differential thermal analysis (TG-DTA), photoluminescence (PL), cathodo-luminescence (CL) spectra and PL lifetimes. The results of XRD indicate that the as-prepared samples are well crystallized with the scheelite structure of CaWO4. The FE-SEM images illustrate that CaWO4 and CaWO4 : Pb2+ and CaWO4 : Tb3+ powders are composed of spherical particles with sizes around 260, 290, and 190 nm respectively, which are the aggregates of smaller nanoparticles around 10-20 nm. Under the UV light or electron beam excitation, the CaWO4 powders exhibits a blue emission band with a maximum at about 440 nm. When the CaWO4 particles are doped with Pb2+, the intensity of luminescence is enhanced to some extent and the luminescence band maximum is red shifted to 460 nm. Tb(3+)-doped CaWO4 particles show the characteristic emission of Tb3+ 5D4-7FJ (J = 6 - 3) transitions due to an energy transfer from WO4(2-) groups to Tb3+.

摘要

采用多元醇法制备了纳米-亚微米结构的CaWO4、CaWO4 : Pb2+和CaWO4 : Tb3+颗粒,并通过X射线衍射(XRD)、场发射扫描电子显微镜(FE-SEM)、透射电子显微镜(TEM)、傅里叶变换红外光谱(FT-IR)、热重-差热分析(TG-DTA)、光致发光(PL)、阴极发光(CL)光谱和PL寿命对其进行了表征。XRD结果表明,所制备的样品具有CaWO4白钨矿结构,结晶良好。FE-SEM图像表明,CaWO4、CaWO4 : Pb2+和CaWO4 : Tb3+粉末分别由尺寸约为260、290和190 nm的球形颗粒组成,这些颗粒是由10-20 nm左右的较小纳米颗粒聚集而成。在紫外光或电子束激发下,CaWO4粉末呈现出一个最大发射波长约为440 nm的蓝色发射带。当CaWO4颗粒掺杂Pb2+时,发光强度在一定程度上增强,且发光带最大值红移至460 nm。由于从WO4(2-)基团到Tb3+的能量转移,Tb(3+)掺杂的CaWO4颗粒显示出Tb3+ 5D4-7FJ(J = 6 - 3)跃迁的特征发射。

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