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Time resolved emission spectra and electron paramagnetic resonance studies of Gd3+ doped calcium phosphate glasses

机译:Gd3 +掺杂磷酸钙玻璃的时间分辨发射光谱和电子顺磁共振研究

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摘要

Gadolinium, Gd3+ (4f7 ), containing glasses are particularly interesting owing to their magnetic and optical properties. Gd3+ has an electron paramagnetic resonance (EPR) centre, which is often used as the EPR probe in different matrices. Another important feature of Gd3+ is that emits ultraviolet radiation (UVR) at around 310 â 313 nm from the 6 P7/2 ï  8 S7/2 transition and is suitable for the treatment of skin disease. Here, we report on Gd3+ doped calcium phosphate host glasses with four different concentrations; 0.5 - 4 mol % and labelled as 0.5Gd, 1Gd, 2Gd and 4Gd. A strong emission peak at 310 nm was observed in the reported glasses with excitation at 274 nm. The emission spectra can also be obtained at specific times during the decay. The time resolved emission data was analyzed with three different approaches namely, simple exponential, NED distribution and stretched exponential. The other approaches confirm the single exponential behaviour for all samples with deviation for the 0.5 Gd. The decay associated spectra (DAS) for the 0.5 Gd indicate that both decays have the same origin. The EPR spectrum exhibits several resonance signals characteristic of Gd3+ ions. The stimulated emission cross sections (Ï P EÃ 10â 21 cm2 ) of the UV emission transition 6 P7/2 ï  8 S7/2 were also reported in the above three approaches.
机译:含有玻璃的G Gd3 +(4f7)由于其磁性和光学性质而特别受关注。 Gd3 +具有电子顺磁共振(EPR)中心,通常在不同的基质中用作EPR探针。 Gd3 +的另一个重要特征是,从6 P7 / 2×8 S7 / 2跃迁开始,在310到313 nm处发出紫外线(UVR),适合治疗皮肤疾病。在这里,我们报告了四种不同浓度的Gd3 +掺杂的磷酸钙基质玻璃; 0.5-4 mol%并标记为0.5Gd,1Gd,2Gd和4Gd。在所报道的玻璃中,在274 nm激发下观察到310 nm处的强发射峰。发射光谱也可以在衰减期间的特定时间获得。用三种不同的方法分析了时间分辨的排放数据,即简单指数,NED分布和拉伸指数。其他方法确认了所有样本的单指数行为,其偏差为0.5 Gd。 0.5 Gd的衰变相关光谱(DAS)表明这两个衰变具有相同的起源。 EPR谱显示出Gd3 +离子的几个共振信号。在上述三种方法中,也报告了紫外线发射跃迁6 P7 / 2×8 S7 / 2的受激发射横截面(ÏP E×10â21 cm2)。

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