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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Microsynthesis and electron ionization mass spectral studies of O(S)-alkyl N,N-dimethyl alkylphosphono(thiolo)thionoamidates for Chemical Weapons Convention verification
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Microsynthesis and electron ionization mass spectral studies of O(S)-alkyl N,N-dimethyl alkylphosphono(thiolo)thionoamidates for Chemical Weapons Convention verification

机译:用于化学武器公约验证的O(S)-烷基N,N-二甲基烷基膦(硫代)硫代氨基甲酸酯的微合成和电子电离质谱研究

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RATIONALE The availability of mass spectra and interpretation skills are essential for unambiguous identification of the Chemical Weapons Convention (CWC)-related chemicals. The O(S)-alkyl N,N-dimethyl alkylphosphono(thiolo) thionoamidates are included in the list of scheduled CWC-related compounds, but there are very few spectra from these compounds in the literature. This paper examines these spectra and their mass spectral fragmentation routes. METHODS The title chemicals were prepared through microsynthetic protocols and were analyzed using electron ionization mass spectrometry with gas chromatography as a MS-inlet system. Structures of fragments were confirmed using analysis of fragment ions of deuterated analogs, tandem mass spectrometry and density functional theory (DFT) calculations. RESULTS Mass spectrometric studies revealed some interesting fragmentation pathways during the ionization process, such as alkene and amine elimination and McLafferty-type rearrangements. The most important fragmentation route of the chemicals is the thiono-thiolo rearrangement. DFT calculations are used to support MS results and to reveal relative preference formation of fragment ions. The retention indices (RIs) of all the studied compounds are also reported. CONCLUSIONS Mass spectra of the synthesized compounds were investigated with the aim to enrich the Organization for the Prohibition of Chemical Weapons (OPCW) Central Analytical Database (OCAD) which may be used for detection and identification of CWC-related chemicals during on-site inspection and/or off-site analysis such as OPCW proficiency tests.
机译:理由质谱和解释技术的可用性对于明确识别《化学武器公约》(CWC)相关化学品至关重要。 O(S)-烷基N,N-二甲基烷基膦(硫代)硫代氨基甲酸酯包括在预定的CWC相关化合物列表中,但文献中来自这些化合物的光谱很少。本文研究了这些光谱及其质谱碎裂途径。方法通过微合成方案制备标题化学品,并使用电子离子化质谱仪和气相色谱作为MS进样口系统对其进行分析。使用氘代类似物的碎片离子分析,串联质谱和密度泛函理论(DFT)计算来确认碎片的结构。结果质谱研究揭示了电离过程中一些有趣的裂解途径,如烯烃和胺的消除以及McLafferty型重排。化学品最重要的裂解途径是硫代-硫代重排。 DFT计算用于支持MS结果并揭示碎片离子的相对偏好形成。还报告了所有研究化合物的保留指数(RIs)。结论对合成化合物的质谱进行了研究,目的是丰富禁止化学武器组织(OPCW)中央分析数据库(OCAD),该数据库可用于在现场检查和检测过程中检测和鉴定与CWC相关的化学物质。 /或非现场分析,例如OPCW能力测试。

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