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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Effect of mass distribution and collection angle in pulsed laser deposited films - a sampling method for chemical characterization of spent nuclear fuel
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Effect of mass distribution and collection angle in pulsed laser deposited films - a sampling method for chemical characterization of spent nuclear fuel

机译:脉冲激光沉积膜中质量分布和集合角度的影响 - 一种用于核燃料化学表征的采样方法

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摘要

Pulsed laser deposition (PLD) can be used as a sampling tool for chemical characterization of irradiated nuclear fuel when coupled with mass spectrometry analysis. The quantity of sample obtained by PLD is very small (typically a few nanograms), thereby reducing the radiation exposure to a considerable extent, but still provides the spatial profile of the irradiated pellet accurately (uncertainty error ~1%) compared to the conventional gamma spectrometry method (error >5%), which is traditionally employed. Since PLD involves deposition of a laser ablated plume on a substrate, the mass distribution in such a plume has been studied at different angles with respect to the target normal at the plume center. The target used is a UO_2 pellet mixed with different elements thereby covering a wide range of masses (24 to 238 amu). The PLD samples collected at different angles are dissolved in nitric acid and analyzed by inductively coupled plasma mass spectrometry (ICP-MS). The distribution patterns show systematic variation with respect to the angles of deposition, nature of the species (ioneutral) in the laser produced plasma plume, mass number, ionization potential and sublimation energy of the species of interest. The results obtained are compared with the literature data and found to be in good agreement. Moreover, this study is the first report on mass distribution of a PLD based sample, covering such a wide mass range (24 to 238 amu) in a single target, and it also highlights the optimum collection angle (0 ± 12°) required for stoichiometric film deposition.
机译:脉冲激光沉积(PLD)可以用作当与质谱分析结合时照射核燃料的化学表征的采样工具。通过PLD获得的样品量非常小(通常是几纳图),从而将辐射暴露在相当大的程度上,但与传统的伽马相比,仍然为照射的颗粒的空间轮廓(不确定误差〜1%)提供光谱法(误差> 5%),传统上使用。由于PLD涉及在基板上沉积激光烧蚀羽流,因此已经在羽流中心的目标法线上以不同的角度研究了这种羽流中的质量分布。所用的靶是与不同元件混合的UO_2颗粒,从而覆盖各种质量块(24至238AMU)。以不同角度收集的PLD样品溶解在硝酸中,并通过电感耦合等离子体质谱(ICP-MS)分析。分布图案显示出相对于沉积角度,物种的性质(离子/中性)在激光产生的等离子体羽毛,质量编号,电离电位和升华能量的沉积角度的系统变化。获得的结果与文献数据进行比较,并符合良好的一致性。此外,该研究是第一份关于PLD基样品质量分布的报告,覆盖单个目标中的宽质量范围(24至238AMU),并且它还突出了所需的最佳收集角度(0±12°)化学计量膜沉积。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2020年第12期|2840-2851|共12页
  • 作者单位

    Homi Bhabha National Institute Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India Materials Chemistry & Metal Fuel Cycle Group Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India;

    Materials Chemistry & Metal Fuel Cycle Group Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India;

    Homi Bhabha National Institute Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India Raja Ramanna Fellow Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India;

    Homi Bhabha National Institute Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India Materials Chemistry & Metal Fuel Cycle Group Indira Gandhi Centre for Atomic Research Kalpakkam 603102 India;

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