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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Site-selective time resolved laser fluorescence spectroscopy of Eu and Cm doped LaPO_4
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Site-selective time resolved laser fluorescence spectroscopy of Eu and Cm doped LaPO_4

机译:Eu和Cm掺杂LaPO_4的定点时间分辨激光荧光光谱

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摘要

Samples of LaPO_4 doped with Eu~(3+) or Cm~(3+) were synthesized by a hydrothermal process which resulted in a solid solution at temperatures less than conventional processing. Time resolved laser fluorescence spectroscopy was used to probe the incorporated Eu~(3+) or Cm~(3+) in order to gain structural information on its local environment. This revealed that Eu~(3+) and Cm~(3+) incorporate on the La site as expected. The emission spectrum of Eu~(3+) resolves the fully degenerate 5-fold splitting of the peaks in the F_2 transition due to the low symmetry of the site, confirming previous calculations. A minor site in the Eu~(3+) doped sample is identified as coordinated with hydroxide contamination. Direct excitation of Cm~(3+) doped samples show the presence of “satellite” species. Although these spectral features have been observed in Cm~(3+) doped LuPO_4 and YPO_4, this is the first time that these satellites are resolved into their individual species. These are hypothesized to be due to a disturbance in the ideal structure which creates a break in the equivalence of the four lanthanum sites within a unit cell. The 4-fold ground state splitting of all species is identical, although slightly shifted, indicating similar environments. The fluorescence lifetimes were long (1.2ms for Cm and 3.6 ms for Eu) indicating an absence of water in the immediate coordination sphere due to the incorporation of the doping ion.
机译:通过水热工艺合成了掺有Eu〜(3+)或Cm〜(3+)的LaPO_4样品,该工艺在低于常规工艺的温度下产生了固溶体。时间分辨激光荧光光谱法用于探测掺入的Eu〜(3+)或Cm〜(3+),以获得有关其局部环境的结构信息。这表明Eu〜(3+)和Cm〜(3+)可以如预期的那样在La位置结合。 Eu〜(3+)的发射光谱解决了由于位置对称性低而导致F_2跃迁中峰的完全退化的5倍分裂,从而确认了先前的计算。 Eu〜(3+)掺杂样品中的一个次要位置被确定为与氢氧化物污染相协调。 Cm〜(3+)掺杂样品的直接激发表明存在“卫星”物质。尽管已经在掺Cm〜(3+)的LuPO_4和YPO_4中观察到了这些光谱特征,但这是这些卫星第一次被分解为它们的单个物种。据推测,这是由于理想结构中的干扰导致单位晶胞中四个镧位点的当量断裂所致。所有物种的4倍基态分裂是相同的,尽管略有偏移,表明环境相似。荧光寿命很长(Cm为1.2ms,Eu为3.6ms),这表明由于掺入了离子,在直接配位球中没有水。

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