超音速膨胀中亚稳态甲酸的形成和检测:射流冷却顺式- hcooh构象的高分辨率红外光谱。

K. Doney, A. Kortyna, Ya-Chu Chan, D. Nesbitt
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引用次数: 1

摘要

首次报道了在15 kcal/mol势垒后的顺阱共振中捕获的亚稳顺式甲酸(HCOOH)的高分辨率直接吸收红外光谱,其中能量不稳定的构象是在反式甲酸/H2混合物的超音速缝状等离子体膨胀中产生的。我们对羟基拉伸(ν1)基元中的顺式甲酸进行了详细的高分辨率旋转振动分析,提供了第一个精确的振动带起源、旋转常数和项值,并结合从头算计算了单、双和微扰三重[CCSD(T)]/ANOn (n = 0,1)的偶簇。2)水平支持实验作业,建立转子内部反顺异构化势能面临界点。在光谱中观测到的a型和b型跃迁的相对强度允许在体固定框架中确定跃迁偶极矩分量,并证明与从头算CCSD(T)理论估计很好地一致,但与简单的键偶极子预测不太一致。观察到的放电信号对H2的依赖表明,在反式和顺式甲酸构象之间存在一种新的H原子自由基化学机制,用于强吸热的“上山”内转子异构化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation and detection of metastable formic acid in a supersonic expansion: High resolution infrared spectroscopy of the jet-cooled cis-HCOOH conformer.
High-resolution direct absorption infrared spectra of metastable cis-formic acid (HCOOH) trapped in a cis-well resonance behind a 15 kcal/mol barrier are reported for the first time, with the energetically unstable conformer produced in a supersonic slit plasma expansion of trans-formic acid/H2 mixtures. We present a detailed high-resolution rovibrational analysis for cis-formic acid species in the OH stretch (ν1) fundamental, providing first precision vibrational band origin, rotational constants, and term values, which in conjunction with ab initio calculations at the couple-cluster with single, double, and perturbative triple [CCSD(T)]/ANOn (n = 0, 1, 2) level support the experimental assignments and establish critical points on the potential energy surface for internal rotor trans-to-cis isomerization. Relative intensities for a- and b-type transitions observed in the spectra permit the transition dipole moment components to be determined in the body fixed frame and prove to be in good agreement with ab initio CCSD(T) theoretical estimates but in poor agreement with simple bond-dipole predictions. The observed signal dependence on H2 in the discharge suggests the presence of a novel H atom radical chemical mechanism for strongly endothermic "up-hill" internal rotor isomerization between trans- and cis-formic acid conformers.
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