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首页> 外文期刊>Radiation Physics and Chemistry >Synthesis and thermoluminescence properties of SrAl2O4 (EU) phosphor irradiated with cobalt-60, 6 MV and 16 MV photon beams
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Synthesis and thermoluminescence properties of SrAl2O4 (EU) phosphor irradiated with cobalt-60, 6 MV and 16 MV photon beams

机译:钴60、6 MV和16 MV光子束辐照的SrAl2O4(EU)荧光粉的合成和热致发光特性

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Powder samples of SrAl2O4 (Eu) were synthesized by the combustion method using urea as a fuel. The combustion products were calcined at 700 degrees C for 1 h. X-ray diffraction (XRD) patterns of the prepared sample exhibit sharp diffraction peaks and absence of any amorphous phase. The average crystalline size was found to be similar to 33.04 nm, calculated by using Debye Scherer's formula. The scanning electron microscope (SEM) images reveal that the crystallites have no uniform shape and the presence of several micro- and nano-particles within the grain. This may be due to the non-uniform distribution of temperature and mass flow in the combustion flame which results in the non-uniform shape of crystallites. The thermogravimetric analysis (TGA) indicates that the prepared sample is thermally stable up to 900 degrees C. Thermoluminescence (TL) behavior of prepared samples was studied after irradiation with Co-60gamma rays, 6 mega voltage (MV) and 16 MV photon beams at various doses. Glow curve of the prepared SrAl2O4 (Eu:1%) sample was similar in shape irrespective of incident energy and radiation type. The dominant peak in each glow curve appeared around at 312 degrees C No shifts in peak positions have been observed. All the glow curves of sample doped with Eu(3%) have relatively higher intensity as compared to the sample doped with Eu(1%). Energy dependence has been observed in the present phosphor. This could be because of increase in the probability of Compton's interaction at this energy range due to transmission of primary as well as scattered radiation and decrease in mass attenuation coefficient with the increase in energy. The trapping parameters namely activation energy (E), order of kinetics (b) and frequency factor (s) have been determined using the glow curve shape (Chen's) method. These phosphors could be utilized for display applications, dating, temperature sensor, low as well as high energy radiation detection and dosimetty especially where tissue equivalency is not much desirable like gamma irradiator, environmental and retrospective dose assessment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用尿素作为燃料,通过燃烧法合成了SrAl2O4(Eu)粉末样品。将燃烧产物在700℃下煅烧1小时。制备的样品的X射线衍射(XRD)图谱显示出尖锐的衍射峰,并且没有任何非晶相。通过使用德拜·谢勒公式计算得出的平均晶体尺寸类似于33.04 nm。扫描电子显微镜(SEM)图像显示微晶没有均匀的形状,并且晶粒内存在数个微米和纳米粒子。这可能是由于燃烧火焰中温度和质量流量的分布不均匀,导致微晶形状不均匀。热重分析(TGA)表明,所制备的样品在900摄氏度以下的温度下仍保持热稳定性。在Co-60γ射线,6兆伏(MV)和16 MV的光子束照射下,研究了所制备样品的热致发光(TL)行为。各种剂量。制备的SrAl2O4(Eu:1%)样品的辉光曲线形状相似,与入射能量和辐射类型无关。每个辉光曲线的主峰出现在312摄氏度左右,但未观察到峰位置的变化。与掺有Eu(1%)的样品相比,掺有Eu(3%)的样品的所有辉光曲线都具有相对较高的强度。在本发明的磷光体中已经观察到能量依赖性。这可能是由于主要辐射和散射辐射的传输导致康普顿在此能量范围内相互作用的可能性增加,以及质量衰减系数随能量的增加而降低。捕获参数,即活化能(E),动力学阶数(b)和频率因子(s)已使用辉光曲线形状(Chen's)方法确定。这些荧光粉可用于显示应用,约会,温度传感器,低能量以及高能量辐射检测和剂量测定,尤其是在组织等效性不太理想的情况下,例如伽马辐射器,环境和回顾性剂量评估。 (C)2015 Elsevier Ltd.保留所有权利。

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