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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >THEORETICAL AND EXPERIMENTAL STUDY OF THE GAS-PHASE REACTIONS OF PFN+ (N=1, 2) IONS WITH N-BASES - A NOVEL ROUTE TO PHOSPHORUS IONS PRESENT IN INTERSTELLAR CLOUDS
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THEORETICAL AND EXPERIMENTAL STUDY OF THE GAS-PHASE REACTIONS OF PFN+ (N=1, 2) IONS WITH N-BASES - A NOVEL ROUTE TO PHOSPHORUS IONS PRESENT IN INTERSTELLAR CLOUDS

机译:PFN +(N = 1,2)离子与N基团的气相反应的理论和实验研究-星际云团中存在的磷离子的新途径

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The reactivity of PFn+ (n = 1, 2) cations toward n-type bases, such as H2O, CH3OH, and NH3, has been investigated using Fourier-transform ion cyclotron resonance (FT-ICR) mass spectrometry. Both phosphorus ions attack the n-center of the selected bases, yielding the corresponding excited onium intermediates, which undergo extensive prototropic rearrangements before fragmenting with formal losses of H and HF (with H2O and NH3) or HF, CH3, and CH3F (with CH3OH). Ab initio molecular orbital calculations at the G2 level of theory have been used to study the structures, the relative stability, and the proton loss energies of the ionic species involved in these reactions. The G2 [PF, H2O](+) and [PF, NH3](+) potential energy profiles conform well with the FT-ICR reaction kinetics. Unequivocal assignment of the structure and the multiplicity of several ionic species obtained from the title reactions and potentially involved in the formation of phosphorus-containing molecules in outer space, i.e. (PO)H+, (FPO)H+, (PNH)H+, and (FPNH)H+, is allowed by a comparison of their G2-calculated proton loss energies with the experimental protonation enthalpies, measured in the FT-ICR instrument with the bracketing technique. The emerging picture has been compared with previous theoretical data concerning strictly related species wherein the phosphorus atom is replaced by nitrogen. [References: 61]
机译:PFn +(n = 1,2)阳离子对n型碱(例如H2O,CH3OH和NH3)的反应性已通过傅立叶变换离子回旋共振(FT-ICR)质谱进行了研究。两种磷离子都攻击选定碱基的n中心,产生相应的受激发的鎓中间体,这些中间体经历了广泛的质子重排,然后破碎,并以H和HF(带有H2O和NH3)或HF,CH3和CH3F(带有CH3OH)的形式损失)。在理论的G2水平上从头算分子轨道计算已用于研究与这些反应有关的离子物种的结构,相对稳定性和质子损失能。 G2 [PF,H2O](+)和[PF,NH3](+)势能曲线与FT-ICR反应动力学很好地吻合。从标题反应中获得的明确明确的结构分配和多种离子物种的多样性,并可能参与外层空间中含磷分子的形成,即(PO)H +,(FPO)H +,(PNH)H +和(通过将它们的G2计算得出的质子损失能量与实验质子化焓进行比较,可以得出FPNH)H +。新兴的图片已与以前有关严格相关物种的理论数据进行了比较,其中磷原子被氮取代。 [参考:61]

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