CdWO4:Ce3+纳米荧光粉的紫外-可见光降频

V.B. Pawade , R. Birmod , Aishwarya Waghmare , K.V. Dabre , S.J. Dhoble
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引用次数: 2

摘要

本文介绍了Ce3+掺杂CdWO4纳米荧光粉的合成及其降频性能。采用低成本、低温湿化学方法合成了纳米荧光粉。通过XRD和HRTEM技术测量了相纯度和晶粒尺寸,并对其降频特性进行了光致发光表征。XRD图谱表明,CdWO4具有单斜结构,与标准PDF图谱一致。HRTEM图像显示磷光体具有纳米片和纳米颗粒的结构形态。本发明的磷光体CdWO4:Ce3+显示出良好的降频特性,并转换宽的紫外波段(范围从220到400 nm,峰值在285 nm)转换成从400延伸到650的可见光谱带 nm,峰值在474 nm。使用高斯函数对允许Ce3+离子跃迁的5d-4f的贡献进行曲线拟合,分析了激发光谱和发射光谱。这种降频磷光体可以用于提高Si太阳能电池的光转换效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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UV–visible downshifting in CdWO4:Ce3+ nanosized phosphor

In this paper, the synthesis of Ce3+ doped CdWO4 nanophosphor and its downshifting properties is presented. The reported nanosized phosphor was synthesized by low cost and low-temperature wet chemical method. Phase purity and crystallite size were measured by XRD and HRTEM techniques, and photoluminescence characterization was carried out for its downshifting properties. The XRD pattern reveals that the CdWO4 has a monoclinic structure and it is in good agreement with standard PDF pattern. HRTEM images reveal that the phosphor has nanoflakes and nanogranules structural morphology. The present phosphor CdWO4:Ce3+ shows good downshifting property and converts the broad ultraviolet band (ranging from 220 to 400 nm and peaking at 285 nm) into a visible spectral band extending from 400 to 650 nm and peaking at 474 nm. The excitation and emission spectra are analyzed by curve fitting using the Gaussian function for the contribution of the 5d-4f allowed the transition of Ce3+ ion. Such downshifting phosphor may be used to improve the light conversion efficiency of Si solar cells.

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