利用高能激光解吸电离技术进行纳米成像质谱分析。

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Davide Bleiner
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引用次数: 0

摘要

纳米级采样质量的减少会降低灵敏度。因此,我们进行了理论分析,以评估样品利用效率和提高灵敏度的余地。高(光子)能量激光解吸电离(HELDI)是一种新型的微分析技术,利用 XUV 激光脉冲来提高纳米尺度的灵敏度并使其均匀化,尤其是对轻元素的灵敏度。在检测三维纳米结构时,只有当仪器差异与成分差异能够区分开来时,局部异质性才会显现出来。通过研究数据散射模式,我们发现可以获得这种基本信息。这种分析方法被应用于分析采用 HELDI 和飞行时间质谱联用技术探测的光电开斯特石材料功能薄膜。结果表明,该方法增强了光元素成像的分析能力,以及辨别仪器差异(随机误差)和真实成分差异(异质性)的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nano-imaging mass spectrometry by means of high-energy laser desorption ionization (HELDI)

Nano-imaging mass spectrometry by means of high-energy laser desorption ionization (HELDI)

Reduction of a sampled mass at the nano-scale degrades the sensitivity. Therefore, a theoretical analysis was carried out to assess the sample utilization efficiency, and the leeway for the enhancement of the sensitivity. High (photon)-energy laser desorption ionization (HELDI) is a novel microanalytical technique that uses XUV laser pulses to enhance and homogenize the sensitivity at the nano-scale, especially for light elements. While inspecting nanostructures in 3D, local heterogeneities are critical and are spotted only if the instrumental variance can be discerned from the compositional one. Such underlying information was found to be accessible when studying the data scatter distribution. Such an analytical method was applied to analyze functional thin films of photovoltaic kesterite materials, probed with HELDI hyphenated to time-of-flight mass spectrometry. The results indicated an enhanced analytical capability for imaging light elements and the ability to discern instrumental variances (random errors) from true compositional ones (heterogeneity).

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来源期刊
CiteScore
6.20
自引率
26.50%
发文量
228
审稿时长
1.7 months
期刊介绍: Innovative research on the fundamental theory and application of spectrometric techniques.
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