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通过高分辨率真空紫外光吸收、光电子能谱和从头算研究甲酸异丁酯的价态和离子基态最低电子态。

Valence and Ionic Lowest-Lying Electronic States of Isobutyl Formate Studied by High-Resolution Vacuum Ultraviolet Photoabsorption, Photoelectron Spectroscopy, and Ab Initio Calculations.

作者信息

Śmiałek M A, Łabuda M, Guthmuller J, Hoffmann S V, Jones N C, MacDonald M A, Zuin L, Mason N J, Limão-Vieira P

机构信息

†Department of Control and Power Engineering, Faculty of Ocean Engineering and Ship Technology, Gdańsk University of Technology, Gabriela Narutowicza 11/12, 80-233 Gdańsk, Poland.

‡Department of Physical Sciences, The Open University, Walton Hall, Milton Keynes, MK7 6AA, United Kingdom.

出版信息

J Phys Chem A. 2015 Aug 13;119(32):8647-56. doi: 10.1021/acs.jpca.5b06053. Epub 2015 Jul 31.

Abstract

The highest resolution vacuum ultraviolet photoabsorption spectrum of isobutyl formate, C5H10O2, yet reported is presented over the energy range 4.5-10.7 eV (275.5-118.0 nm) revealing several new spectral features. Valence and Rydberg transitions and their associated vibronic series observed in the photoabsorption spectrum have been assigned in accordance with new ab initio calculations of the vertical excitation energies and oscillator strengths. Calculations have also been carried out to determine the ionization energies and fine structure of the lowest ionic state of isobutyl formate and are compared with a newly recorded photoelectron spectrum (from 9.0 to 27.0 eV). The value of the first ionization energy was determined to be 10.508 eV (adiabatic) and 10.837 eV (vertical). New vibrational structure is observed in the first photoelectron band, predominantly resulting from C-O and C═O stretches of the molecule. The photoabsorption cross sections have been used to calculate the photolysis lifetime of isobutyl formate in the upper stratosphere (20-50 km), indicating that the hydroxyl radical processes will be the main loss process for isobutyl formate.

摘要

本文给出了迄今为止所报道的甲酸异丁酯(C₅H₁₀O₂)在4.5 - 10.7电子伏特(275.5 - 118.0纳米)能量范围内的最高分辨率真空紫外光吸收光谱,揭示了几个新的光谱特征。根据垂直激发能和振子强度的新的从头算计算结果,对光吸收光谱中观察到的价态和里德堡跃迁及其相关的振动序列进行了归属。还进行了计算以确定甲酸异丁酯最低离子态的电离能和精细结构,并与新记录的光电子能谱(9.0至27.0电子伏特)进行了比较。确定第一电离能的值为10.508电子伏特(绝热)和10.837电子伏特(垂直)。在第一个光电子能带中观察到了新的振动结构,主要是由分子的C - O和C═O伸缩振动引起的。光吸收截面已被用于计算平流层上部(20 - 50千米)甲酸异丁酯的光解寿命,表明羟基自由基过程将是甲酸异丁酯的主要损失过程。

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