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纳米晶Mg₂P₂O₇:Eu荧光粉的发光特性

Luminescence properties of nanocrystalline Mg P O :Eu phosphor.

作者信息

Gupta Karan Kumar, Dhoble Nirupama S, Burghate Devendra K, Dhoble Sanjay J

机构信息

Department of Physics, RTM Nagpur University, Nagpur, India.

Department of Physics Shivaji Science College, Nagpur, India.

出版信息

Luminescence. 2018 Aug;33(5):947-953. doi: 10.1002/bio.3494. Epub 2018 May 29.

Abstract

Thermoluminescence (TL) measurements were carried out on europium (Eu) doped magnesium pyrophosphate (Mg P O ) nanopowders using gamma irradiation in the dose range of 0.1 to 3 kGy. The powder samples were successfully synthesized by chemical co-precipitation synthesis route. The formation and crystallinity of the compound was confirmed by powder X-ray diffraction (PXRD) pattern. The estimated particle size was found to be in nanometer scale by using Debye Scherer's formula. A scanning electron microscopy (SEM) study was carried out for the morphological characteristics of as synthesized Mg P O :Eu phosphor. Photoluminescence (PL) study was carried out to confirm the presence of the rare-earth ion and its valence state. The TL analysis of synthesized samples were performed after the irradiation of Mg P O :Eu with cobalt-60 ( Co) gamma rays. The high and low intensity peaks of TL glow curve appeared at around 400 K, 450 K, 500 K and 596 K respectively. The appreciable shift in peak positions has been observed for different concentrations of Eu ion. The trapping parameters, namely activation energy (E), order of kinetics (b) and frequency factor (s) have been determined using thermal cleaning process, peak shape (Chen's) method and glow curve deconvolution (GCD) functions.

摘要

采用伽马射线辐照,对铕(Eu)掺杂焦磷酸镁(Mg₂P₂O₇)纳米粉末进行了热释光(TL)测量,辐照剂量范围为0.1至3千戈瑞。通过化学共沉淀合成路线成功合成了粉末样品。通过粉末X射线衍射(PXRD)图谱确认了该化合物的形成和结晶度。利用德拜-谢乐公式发现估计的粒径处于纳米尺度。对合成的Mg₂P₂O₇:Eu荧光粉进行了扫描电子显微镜(SEM)研究以观察其形态特征。进行了光致发光(PL)研究以确认稀土离子的存在及其价态。在用钴-60(⁶⁰Co)伽马射线辐照Mg₂P₂O₇:Eu后,对合成样品进行了TL分析。TL发光曲线的高强度和低强度峰分别出现在约400K、450K、500K和596K处。对于不同浓度的Eu离子,观察到了峰位置的明显偏移。利用热清洗过程、峰形(陈法)方法和发光曲线解卷积(GCD)函数确定了俘获参数,即激活能(E)、动力学级数(b)和频率因子(s)。

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