论文标题
乙腈(CH3CN)与被困的,翻译冷CCl+的同位素特异性反应
Isotope-specific reactions of acetonitrile (CH3CN) with trapped, translationally cold CCl+
论文作者
论文摘要
使用线性Paul离子陷阱与飞行时间质谱仪耦合,研究了CCL+与乙腈(CH3CN)的气相反应。这项工作基于先前对CCL+与乙炔反应的研究,并进一步探讨了CCL+与有机中性分子的反应性。两种反应物种与星际培养基(ISM)的化学观测和模型有关。尤其是硝酸盐在益生元化学方面的相关性,例如在土星的卫星之一的泰坦大气中发现。这项工作代表了卤化碳酸盐与硝酸酯的最早研究的反应之一,也是对CCL+与硝酸菌的第一次探索。反应物同位素学用于明确分配此反应中的离子主要产物:HNCCL+和C2H3+。测量分支比率,并确定两种主要产品同样可能。量子化学和统计反应速率理论计算阐明了解释反应数据的相关信息,包括:反应热力学,反应的势能表面以及观察到的产物的速率常数和分支比率。特别是,反应产物和势能表面刺激了有关硝酸盐官能团的强度和作用的问题,可以通过该类别的更多反应进一步探索。
The gas-phase reaction of CCl+ with acetonitrile (CH3CN) is studied using a linear Paul ion trap coupled to a time-of-flight mass spectrometer. This work builds on a previous study of the reaction of CCl+ with acetylene and further explores the reactivity of CCl+ with organic neutral molecules. Both of the reactant species are relevant in observations and models of chemistry in the interstellar medium (ISM). Nitriles, in particular, are noted for their relevance in prebiotic chemistry, such as is found in the atmosphere of Titan, one of Saturn's moons. This work represents one of the first studied reactions of a halogenated carbocation with a nitrile, and the first exploration of CCl+ with a nitrile. Reactant isotopologues are used to unambiguously assign ionic primary products from this reaction: HNCCl+ and C2H3+. Branching ratios are measured and both primary products are determined to be equally probable. Quantum chemical and statistical reaction rate theory calculations illuminate pertinent information for interpreting the reaction data, including: reaction thermodynamics, a potential energy surface for the reaction, as well as rate constants and branching ratios for the observed products. In particular, the reaction products and potential energy surface stimulate questions regarding the strength and role of the nitrile functional group, which can be further explored with more reactions of this class.