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首页> 外文期刊>European journal of mass spectrometry >Novel approach to constructing laser ionization elemental time-of-flight mass spectrometer
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Novel approach to constructing laser ionization elemental time-of-flight mass spectrometer

机译:构建激光电离元素飞行时间谱仪的新方法

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>The main advantages of laser sampling are associated with following features: sample preparations as well as consumables are not needed, low risk of sample contamination, good spatial resolution. In mass spectrometry, high laser irradiance can be used for both ablation and ionization processes. The method is especially profitable in time-of-flight mass spectrometry. A new principle of constructing laser ionization time-of-flight mass spectrometer based on wedge-shaped ion mirrors and the absence of electrostatic ion acceleration before mass analysis is discussed. Among advantages of the analyzer there are ability to provide temporal focusing of ions in a wide energy range (±20%), compactness of the analyzer, and minimization of the requirements for power supplies. The approach is expected to be profitable for standardless elemental analysis of solid samples, which should be possible at laser irradiation power density more than 3?×?109?W/cm2that ensures complete ionization of all elements in a laser plasma. The analytical signal of each element is formed as the sum of the signals for all charge states and the energy scan of the mass spectra is provided.]]>
机译:<![cdata [ >激光采样的主要优点与以下特征有关:不需要样品制剂以及消耗品,样品污染的风险低,空间分辨率良好。在质谱中,高激光辐照度可用于消融和电离过程。该方法在飞行时间质谱中尤其有利可图。基于楔形离子镜构建激光电离型质谱仪的新原理及批量分析前的静电离子加速度。分析仪的优点在于有能力在宽能量范围内(±20%),分析仪的紧凑性以及最小化电源要求的能力提供时间。预计该方法对于固体样品的标准元素分析预计是有利可图的,这对于激光照射功率密度应该是可能的3?×10 9? w / cm 2 确保激光等离子体中的所有元素的完全电离。每个元件的分析信号形成为所有充电状态的信号之和,提供质谱的能量扫描。 ]]>

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