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气相中 HNP(q)和 HPN(q)(q = 0,+1,-1)检测的光谱相关参数的理论研究。

Theoretical study of the spectroscopically relevant parameters for the detection of HNP(q) and HPN(q) (q = 0, +1, -1) in the gas phase.

机构信息

Université Paris-Est, Laboratoire Modélisation et Simulation Multi Echelle, MSME UMR 8208 CNRS, 5 bd Descartes, 77454 Marne-la-Vallée, France.

出版信息

J Chem Phys. 2012 Jun 28;136(24):244311. doi: 10.1063/1.4730299.

Abstract

High level ab initio electronic structure calculations at different levels of theory have been performed on HNP and HPN neutrals, anions, and cations. This includes standard coupled cluster CCSD(T) level with augmented correlation-consistent basis sets, internally contacted multi-reference configuration interaction, and the newly developed CCSD(T)-F12 methods in connection with the explicitly correlated basis sets. Core-valence correction and scalar relativistic effects were examined. We present optimized equilibrium geometries, harmonic vibrational frequencies, rotational constants, adiabatic ionization energies, electron affinities, vertical detachment energies, and relative energies. In addition, the three-dimensional potential energy surfaces of HNP(-1,0,+1) and of HPN(-1,0,+1) were generated at the (R)CCSD(T)-F12b∕cc-pVTZ-F12 level. The anharmonic terms and fundamentals were derived using second order perturbation theory. For HNP, our best estimate for the adiabatic ionization energy is 7.31 eV, for the adiabatic electron affinity is 0.47 eV. The higher energy isomer, HPN, is 23.23 kcal∕mol above HNP. HPN possesses a rather large adiabatic electron affinity of 1.62 eV. The intramolecular isomerization pathways were computed. Our calculations show that HNP(-) to HPN(-) reaction is subject to electron detachment.

摘要

采用不同理论水平的从头算方法(包括标准耦合簇 CCSD(T)方法和含augmented correlation-consistent 基组的内坐标多参考组态相互作用方法以及新发展的 CCSD(T)-F12 方法)对 HNP 和 HPN 的中性、阴离子和阳离子进行了高精度从头算电子结构计算。还考察了核心价电子校正和标量相对论效应。本文给出了优化的平衡几何构型、简正振动频率、转动常数、绝热电离能、电子亲和能、垂直离解能和相对能量。此外,还在(R)CCSD(T)-F12b∕cc-pVTZ-F12 水平下生成了 HNP(-1,0,+1)和 HPN(-1,0,+1)的三维势能面。利用二级微扰理论推导了非谐项和简正频率。对于 HNP,我们对绝热电离能的最佳估计值为 7.31 eV,对绝热电子亲合能的最佳估计值为 0.47 eV。高能异构体 HPN 比 HNP 高 23.23 kcal∕mol。HPN 具有相当大的绝热电子亲合能(1.62 eV)。计算了分子内异构化途径。我们的计算表明,HNP(-)到 HPN(-)的反应易发生电子脱离。

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