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Probing Coherent Vibrations of Organic Phosphonate Radical Cations with Femtosecond Time-Resolved Mass Spectrometry

机译:飞秒时间分辨质谱法探测有机膦酸酯基阳离子的相干振动

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摘要

Organic phosphates and phosphonates are present in a number of cellular components that can be damaged by exposure to ionizing radiation. This work reports femtosecond time-resolved mass spectrometry (FTRMS) studies of three organic phosphonate radical cations that model the DNA sugar-phosphate backbone: dimethyl methylphosphonate (DMMP), diethyl methylphosphonate (DEMP), and diisopropyl methylphosphonate (DIMP). Upon ionization, each molecular radical cation exhibits unique oscillatory dynamics in its ion yields resulting from coherent vibrational excitation. DMMP has particularly well-resolved 45 fs (732±28 cm1) oscillations with a weak feature at 610–650 cm1, while DIMP exhibits bimodal oscillations with a period of ∼55 fs and two frequency features at 554±28 and 670–720 cm1. In contrast, the oscillations in DEMP decay too rapidly for effective resolution. The low- and high-frequency oscillations in DMMP and DIMP are assigned to coherent excitation of the symmetric O–P–O bend and P–C stretch, respectively. The observation of the same ionization-induced coherently excited vibrations in related molecules suggests a possible common excitation pathway in ionized organophosphorus compounds of biological relevance, while the distinct oscillatory dynamics in each molecule points to the potential use of FTRMS to distinguish among fragment ions produced by related molecules.
机译:有机磷酸酯和膦酸酯存在于许多细胞成分中,这些成分可因暴露于电离辐射而受损。这项工作报告了飞秒时间分辨质谱(FTRMS)对三种有机膦酸酯自由基阳离子的研究,该阳离子模拟了DNA糖-磷酸骨架,分别是:甲基丙烯酸二甲酯(DMMP),甲基膦酸二乙酯(DEMP)和甲基磷酸二异丙酯(DIMP)。电离后,每个分子阳离子都因相干振动激发而在其离子产量中表现出独特的振荡动力学。 DMMP的解析度特别好,为45 fs( < mn> 732 ± 28 cm 1 )在610–650 cm处具有弱特征的振荡 1 < / msup> ,而DIMP在 554 ± 28 和670–720 cm 1 。相反,DEMP中的振荡衰减太快而无法有效解决。 DMMP和DIMP中的低频和高频振荡分别分配给对称O–P–O弯曲和P–C拉伸的相干激励。对相关分子中相同电离引起的相干激发振动的观察表明,具有生物学相关性的电离有机磷化合物中可能存在共同的激发途径,而每个分子中不同的振荡动力学表明,FTRMS可以潜在地用于区分由质谱产生的碎片离子相关分子。

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