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首页> 外文期刊>Bulletin of Materials Science >Luminescence properties of terbium-doped Li3PO4 phosphor for radiation dosimetry
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Luminescence properties of terbium-doped Li3PO4 phosphor for radiation dosimetry

机译:radiation掺杂Li3PO4荧光粉的发光特性

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A polycrystalline sample of Li3PO4:Tb3+ phosphor was successfully synthesized using solid-state diffusion method. This synthesis method is of low cost, low temperature and does not require any other atmospheres for the synthesis. The powder X-ray diffraction (PXRD), photoluminescence (PL) emission and excitation spectra, thermoluminescence (TL) and optically stimulated luminescence (OSL) were measured. The particle size was calculated using the Debye Scherrer formula and found to be 79.42 nm. PL emission spectra of Li3PO4:Tb3+ phosphor show the strong prominent peak at 544 nm corresponding to D-5(4) to F-7(5) transitions of Tb3+. The OSL sensitivity of prepared Li3PO4:Tb3+ phosphor was 50% of that of alpha-Al2O3:C. Its decay curve consists of three components with photoionization cross-sections 0.44 x 10(-17), 3.09 x 10(-17) and 23x10(-17) cm(2). The TL glow curve of the prepared sample consists of two characteristic peaks, which were deconvoluted using the peak fit software, and kinetic parameters were determined using the peak shape method. TL intensity was compared with that of the commercially available TLD-500 phosphor. OSL dose response was linear in the measured range and the minimum detectable dose (MDD) was found to be 67.42 mu Gy, while fading of the OSL signal was found to be about 27% in 4200 min after which the OSL signal stabilizes.
机译:使用固态扩散法成功地合成了Li3PO4:Tb3 +荧光粉的多晶样品。该合成方法成本低,温度低,并且不需要任何其他气氛进行合成。测量了粉末X射线衍射(PXRD),光致发光(PL)和激发光谱,热致发光(TL)和光学激发发光(OSL)。使用Debye Scherrer公式计算粒径,发现为79.42nm。 Li3PO4:Tb3 +荧光粉的PL发射光谱在544 nm处显示出一个强烈的突出峰,对应于Tb3 +的D-5(4)到F-7(5)跃迁。制备的Li 3 PO 4:Tb 3+荧光粉的OSL灵敏度为α-Al2 O 3:C的50%。它的衰减曲线由光电离截面为0.44 x 10(-17),3.09 x 10(-17)和23x10(-17)cm(2)的三个分量组成。所制备样品的TL辉光曲线由两个特征峰组成,使用峰拟合软件对其进行反卷积,并使用峰形方法确定动力学参数。将TL强度与市售TLD-500磷光体的强度进行比较。 OSL剂量响应在测量范围内呈线性,最小可检测剂量(MDD)为67.42μGy,而在4200分钟内OSL信号的衰减约为27%,此后OSL信号稳定。

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