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掺铒锆酸钙磷光体的发光研究与红外发射

Luminescence studies and infrared emission of erbium-doped calcium zirconate phosphor.

作者信息

Tiwari Neha, Dubey Vikas

机构信息

Department of Physics Govt. Model Science College, Jabalpur, India.

Department of Physics, Bhilai Institute of Technology, Raipur, India.

出版信息

Luminescence. 2016 May;31(3):837-42. doi: 10.1002/bio.3039. Epub 2015 Oct 12.

Abstract

The near-infrared-to-visible upconversion luminescence behaviour of Er(3+)-doped CaZrO3 phosphor is discussed in this manuscript. The phosphor was prepared by a combustion synthesis technique that is suitable for less-time-taking techniques for nanophosphors. The starting materials used for sample preparation were Ca(NO3)2.4H2O, Zr(NO3)4 and Er(NO3)2, and urea was used as a fuel. The prepared sample was characterized by X-ray diffraction (XRD). The surface morphology of prepared phosphor was determined by field emission gun scanning electron microscopy (FEGSEM). The functional group analysis was determined by Fourier transform infrared (FTIR) spectroscopy. All prepared phosphors with variable Er(3+) concentrations (0.5-2.5 mol%) were studied by photoluminescence analysis. It was found that the excitation spectra of the prepared phosphor showed a sharp excitation peak centred at 980 nm. The emission spectra with variable Er(3+) concentrations showed strong peaks in the 555 nm and 567 nm range, with a dominant peak at 555 nm due to the ((2)H(11/2),(4)S(3/2)) transition and a weaker transition at 567 nm associated with 527 nm. Spectrophotometric determination of the peak was evaluated by the Commission Internationale de I'Eclairage (CIE) method These upconverted emissions were attributed to a two-photon process. The excitation wavelength dependence of the upconverted luminescence, together with its time evolution after infrared pulsed excitation, suggested that energy transfer upconversion processes were responsible for the upconversion luminescence. The upconversion mechanisms were studied in detail through laser power dependence. Excited state absorption and energy transfer processes were discussed as possible upconversion mechanisms. The cross-relaxation process in Er(3+) was also investigated.

摘要

本文讨论了掺铒(Er(3+))的CaZrO3荧光粉的近红外到可见光的上转换发光行为。该荧光粉采用燃烧合成技术制备,该技术适用于制备纳米荧光粉的耗时较短的工艺。用于样品制备的起始材料为Ca(NO3)2·4H2O、Zr(NO3)4和Er(NO3)2,尿素用作燃料。制备的样品通过X射线衍射(XRD)进行表征。通过场发射枪扫描电子显微镜(FEGSEM)确定制备的荧光粉的表面形态。通过傅里叶变换红外(FTIR)光谱进行官能团分析。对所有具有可变Er(3+)浓度(0.5 - 2.5 mol%)的制备荧光粉进行了光致发光分析。结果发现,制备的荧光粉的激发光谱在980 nm处有一个尖锐的激发峰。具有可变Er(3+)浓度的发射光谱在555 nm和567 nm范围内显示出强峰,其中555 nm处的主峰归因于((2)H(11/2),(4)S(3/2))跃迁,567 nm处的较弱跃迁与527 nm相关。通过国际照明委员会(CIE)方法对峰进行分光光度测定。这些上转换发射归因于双光子过程。上转换发光的激发波长依赖性及其在红外脉冲激发后的时间演变表明,能量转移上转换过程是上转换发光的原因。通过激光功率依赖性详细研究了上转换机制。讨论了激发态吸收和能量转移过程作为可能的上转换机制。还研究了Er(3+)中的交叉弛豫过程。

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