首页> 外文会议>International conference on computational science and its applications >Analytical Potential Energy Formulation for a New Theoretical Approach in Penning Ionization
【24h】

Analytical Potential Energy Formulation for a New Theoretical Approach in Penning Ionization

机译:Penning电离新理论方法的分析势能公式

获取原文

摘要

The analysis of recent Penning ionization electron spectra as a function of the collision energy for both Ne*-Kr and Ne*-Xe autoionizing reactions allowed the development of a new general theoretical approach able to fully describe the stereodynamics of the Penning ionization reactions at a state to state level. Details on such a general and original approach based on the dependence of the reaction probability on the relative orientation of the atomic and molecular orbitals of reagents and products, are given. The mutual orientation of the collisional partners with respect to the intermolecular axis of the intermediate [Ne—Rg]* (with Rg = Kr or Xe) excited collision complex (i.e. the transition state of studied reactions) controls the characteristics of the intermolecular potential, which is formulated in a new analytical form whose details are presented and discussed. Obtained results refer to a statistical/random orientation of the open shell ionic core of Ne* , and in the two cases of Ne* -Kr and Ne* -Xe autoionizing collisions, we were able to reproduce and characterize the dependence on the collision energy of the experimental branching ratio between probabilities of spin-orbit resolved elementary processes already published. Such findings result from anisotropy effects connected to atomic orbital orientation/alignment, and their full understanding is a crucial point to describe the dependence of the stereo-dynamics on the electronic structure of the [Ne—Rg]* transition state. In this way, we are able to fully characterize the state to state reaction probability for the Penning ionization reactions involving Kr and Xe atoms with ionizing Ne* atoms in either ~3P_2 and ~3P_0 sublevels. This original methodology can be applied also to Penning ionization processes involving molecular targets, and in principle is able to point out the basic role of electronic rearrangements inside the transition state of various types of chemical reactions at thermal and sub-thermal collision energies which are of interest in astrochemical environments, being a much more arduous problem in order to be completely characterized.
机译:对最近的Penning电离电子光谱作为Ne * -Kr和Ne * -Xe自电离反应的碰撞能量的函数的分析,可以开发出一种新的通用理论方法,该方法能够全面描述Penning电离反应的立体动力学。州与州之间的级别。给出了基于反应概率对试剂和产物的原子和分子轨道的相对取向的依赖性的这种一般和原始方法的细节。碰撞伙伴相对于中间体[Ne-Rg] *(Rg = Kr或Xe)激发的碰撞配合物(即研究的反应的过渡态)的分子间轴的相互取向控制分子间电位的特性,它以一种新的分析形式制定,详细介绍和讨论。获得的结果涉及Ne *的开壳离子核的统计/随机取向,并且在Ne * -Kr和Ne * -Xe自动电离碰撞的两种情况下,我们能够重现并表征对碰撞能量的依赖性已经发表的自旋轨道分辨基本过程的概率之间的实验分支比的说明。这些发现是由与原子轨道取向/排列相关的各向异性效应引起的,它们的充分理解是描述立体动力学对[Ne-Rg] *过渡态电子结构的依赖性的关键点。这样,我们能够完全表征涉及Kr和Xe原子以及〜3P_2和〜3P_0子级中的电离Ne *原子的潘宁电离反应的状态间反应概率。这种原始的方法也可以应用于涉及分子靶标的潘宁电离过程,并且原则上可以指出电子重排在热和亚热碰撞能作用下各种化学反应的过渡态内部的基本作用。为了完全表征,对地球化学环境的兴趣是一个更加艰巨的问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号