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Electron Transfer Induced Decomposition in Potassium–Nitroimidazoles Collisions: An Experimental and Theoretical Work

机译:电子传递诱导的钾-硝基咪唑碰撞中的分解:一项实验和理论工作

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摘要

Electron transfer induced decomposition mechanism of nitroimidazole and a selection of analogue molecules in collisions with neutral potassium (K) atoms from 10 to 1000 eV have been thoroughly investigated. In this laboratory collision regime, the formation of negative ions was time-of-flight mass analyzed and the fragmentation patterns and branching ratios have been obtained. The most abundant anions have been assigned to the parent molecule and the nitrogen oxide anion (NO ) and the electron transfer mechanisms are comprehensively discussed. This work focuses on the analysis of all fragment anions produced and it is complementary of our recent work on selective hydrogen loss from the transient negative ions produced in these collisions. Ab initio theoretical calculations were performed for 4-nitroimidazole (4NI), 2-nitroimidazole (2NI), 1-methyl-4- (Me4NI) and 1-methyl-5-nitroimidazole (Me5NI), and imidazole (IMI) in the presence of a potassium atom and provided a strong basis for the assignment of the lowest unoccupied molecular orbitals accessed in the collision process.
机译:彻底研究了硝基咪唑的电子转移诱导分解机理以及与10至1000 eV的中性钾(K)原子碰撞时选择的类似分子。在这种实验室碰撞方式下,对飞行时间质量负离子的形成进行了分析,并获得了碎片化模式和分支比。已经将最丰富的阴离子分配给了母体分子,并全面讨论了氮氧化物阴离子(NO)和电子转移机理。这项工作着重于分析所有产生的碎片阴离子,是对我们最近的工作的补充,这些工作是关于这些碰撞中产生的瞬态负离子选择性氢损失的研究。在存在条件下对4-硝基咪唑(4NI),2-硝基咪唑(2NI),1-甲基-4-(Me4NI)和1-甲基-5-硝基咪唑(Me5NI)和咪唑(IMI)从头进行了理论计算钾原子的存在,为碰撞过程中进入的最低未占据分子轨道的分配提供了坚实的基础。

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