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A laser ablation electron impact ionization time-of-flight mass spectrometer for analysis of condensed materials

机译:用于分析凝聚材料的激光烧蚀电子冲击电离飞行时间质谱仪

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摘要

Laser desorption/ionization (LDI) mass spectrometry suffers from poor reproducibility and a strong bias in representing the chemical composition of the sample in the mass spectra. In regard to develop laser mass spectrometry towards a quantitative analysis technique desorption and ionization processes should be separated. Here we describe a time-of-flight mass spectrometer (TOF-MS) with laser ablation and subsequent electron impact ionization (LA-EI-MS). Sample material is ablated by an Nd-YAG laser pulse (λ=355 nm, E=0.5-35 mJ, τ=9 ns), which produces ions and neutrals in the ablation plume. After expansion, parts of the plume enter the EI ion source where neutrals are ionized by electron impact (E_(el)=70 eV). Ions are extracted from the ion source into the flight tube of the TOF-MS by applying a pulsed repeller potential. Depending on delay times between laser pulse and repeller pulse either neutrals or ions emitted from the sample were analyzed. Different mass spectra of the same sample are obtained in these two analyzing modes under the same irradiation conditions. With a relative standard deviation of 10 to 15, reproducibility of mass spectra is significantly better in LA-EI-MS than in LDI-MS.
机译:激光解吸/电离 (LDI) 质谱法的重现性较差,并且在质谱中表示样品的化学成分时存在很强的偏差。关于向定量分析技术发展激光质谱法,应将解吸和电离过程分开。在这里,我们描述了一种具有激光烧蚀和随后的电子冲击电离 (LA-EI-MS) 的飞行时间质谱仪 (TOF-MS)。样品材料通过Nd-YAG激光脉冲(λ=355 nm,E=0.5-35 mJ,τ=9 ns)烧蚀,在烧蚀羽流中产生离子和中性。膨胀后,部分羽流进入EI离子源,中性物质被电子撞击电离(E_(el)=70 eV)。通过施加脉冲排斥电位,将离子从离子源中提取到TOF-MS的飞行管中。根据激光脉冲和排斥器脉冲之间的延迟时间,分析样品中性物质或离子。在相同的辐照条件下,在这两种分析模式下获得同一样品的不同质谱。相对标准偏差为10%至15%,LA-EI-MS的质谱重现性明显优于LDI-MS。

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