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Laser Microprobe with Fourier Transform Ion Cyclotron Resonance Mass Spectrometer for Surface Analysis

机译:具有傅里叶变换离子回旋共振质谱仪的激光微探针用于表面分析

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Fourier transform ion cyclotron resonance laser microprobe mass spectrometry (FTICR LMMS) uses focused laser irradiation of solids with a spot of 5 (mu)m and a FTICR mass analyzer for local analysis with high mass resolution. A new ion source design has been developed to improve the extraction and transfer of ions generated in an external laser microprobe source. Calculations predicted trapping of ions initially emitted with angles up to 40 deg and 60 deg from the surface and from a distance of 1 mm above the sample, respectively. The analytical performances of the method have been verified on two sets of test samples. First, detection of chemisorbed benzotriazole on copper, average of two monolayers, has been shown with less sample consumption than typically required in static secondary ion mass spectrometry with a time-of-flight analyzer. Second, experiments on a thermal plate for offset printing have shown the feasibility of analysis and quantification of dyes embedded in a polymer matrix.
机译:傅里叶变换离子回旋共振激光显微探针质谱(FTICR LMMS)使用聚焦激光对固体的激光辐照,光斑为5μm,并使用FTICR质量分析仪进行具有高质量分辨率的局部分析。已经开发了一种新的离子源设计,以改善外部激光微探针源中产生的离子的提取和转移。计算可预测初始捕获的离子被捕获的角度分别与表面和样品上方1 mm处的夹角分别为40度和60度。该方法的分析性能已在两组测试样品上得到验证。首先,与使用飞行时间分析仪进行的静态二次离子质谱分析法相比,检测到的铜平均水平为两个单层的化学吸附苯并三唑的样品消耗量更低。其次,在用于胶版印刷的热板上进行的实验表明,分析和定量嵌入聚合物基质中的染料的可行性。

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