首页> 外文期刊>Analytical chemistry >Enhancement Of the Molecular Ion Peak from Halogenated Benzenes and Phenols Using Femtosecond Laser Pulses in Conjunction with Supersonic Beam/Multiphoton Ionization Mass Spectrometry
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Enhancement Of the Molecular Ion Peak from Halogenated Benzenes and Phenols Using Femtosecond Laser Pulses in Conjunction with Supersonic Beam/Multiphoton Ionization Mass Spectrometry

机译:飞秒激光脉冲与超声束/多光子电离质谱联用提高卤代苯和苯酚的分子离子峰

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摘要

Halogenated benzenes and phenols are measured by multiphoton ionization mass spectrometry using femtosecond (150, 500 fs) and nanosecond (15 ns) laser pulses. The molecular ion is Strongly enhanced for monohalobenzenes when the pulse width of the ionization laser is shorter than the lifetimes of their excited states. This is attributed to the reduction of intersystem crossing by a spin-orbit interaction, the so-called internal heavy-atom effect, and to rapid dissociation from the triplet state. A femtosecond laser pulse was deemed to be useful for the efficient ionization of dichlorobenzene and trichlorobenzene although their lifetimes are unknown, since polychlorinated benzenes are thought to have shorter lifetimes as the result of a stronger spin-orbit interaction. The ionization efficiencies of o-chlorophenol and p-chlorophenol are also obtained using femtosecond and nanosecond pulses. In the case of o-chlorophenol, intersystem crossing occurs more efficiently by stabilization of the triplet state by intramolecular hydrogen bonding, and as a result, the femtosecond pulse is more effective in ionizing o-chlorophenol, which has a shorter lifetime. These results indicate that an ultrashort laser pulse is very useful in improving the ionization efficiency for a molecule with a short lifetime, such as polychlorinated dioxins and their precursors.
机译:使用飞秒(150,500 fs)和纳秒(15 ns)激光脉冲通过多光子电离质谱法测量卤代苯和苯酚。当电离激光的脉冲宽度短于其激发态的寿命时,对于单卤代苯,分子离子将得到强烈增强。这归因于自旋轨道相互作用减少了系统间交叉,即所谓的内部重原子效应,并且归因于从三重态快速解离。飞秒激光脉冲被认为对有效地电离二氯苯和三氯苯有用,尽管它们的寿命是未知的,因为人们认为,由于较强的自旋轨道相互作用,多氯苯的寿命较短。还使用飞秒和纳秒脉冲获得邻氯苯酚和对氯苯酚的电离效率。在邻氯苯酚的情况下,通过分子内氢键使三重态稳定,从而更有效地发生了系统间穿越,结果,飞秒脉冲在电离邻氯苯酚方面更有效,使用寿命更短。这些结果表明,超短激光脉冲对于提高寿命短的分子(如多氯二恶英及其前体)的电离效率非常有用。

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