Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093-0314, USA.
J Phys Chem A. 2011 Jun 2;115(21):5294-306. doi: 10.1021/jp112028c. Epub 2011 May 9.
The gas phase spectra of several vibrational bands of peroxyformic acid (PFA), an atmospheric molecule exhibiting intramolecular hydrogen bonding, are presented. In the fundamental region, Fourier transform infrared (FT-IR) spectroscopy is used to probe the C-O, O-H and C-H stretching vibrations, while in the region of the first and second OH-stretching overtones (2ν(OH) and 3ν(OH)) photoacoustic spectroscopy is used. Integrated absorption cross sections for the PFA vibrational bands are determined by comparing their respective peak areas with that for the OH-stretching bands of n-propanol for which the absorption cross section is known. The measured integrated intensities of the OH stretching bands are then compared with a local mode model using a one-dimensional dipole moment function in conjunction with the OH stretching potential computed at both the MP2/aug-cc-pVDZ and CCSD(T)/aug-cc-pVDZ levels. The data allow us to investigate changes in the OH stretch band position and intensity as a function of overtone order arising from the influence of hydrogen bonding. Furthermore, calculations at the MP2/aug-cc-pVDZ level show that there are three stable conformers of PFA with relative energies of 0, 13.54, and 13.76 kJ/mol, respectively. In the room temperature spectra, however, we see evidence for transitions from only the lowest energy conformer. The geometrical parameters and vibrational frequencies of the most stable conformer are presented.
呈现了几种过氧甲酸(PFA)振动带的气相光谱,PFA 是一种表现出分子内氢键的大气分子。在基本区域中,傅里叶变换红外(FT-IR)光谱用于探测 C-O、O-H 和 C-H 伸缩振动,而在第一和第二 OH 伸缩泛频(2ν(OH)和 3ν(OH))区域中,光声光谱用于探测。通过将各自的峰面积与已知吸收截面的正丙醇的 OH 伸缩带的峰面积进行比较,确定了 PFA 振动带的积分吸收截面。然后,使用一维偶极矩函数和在 MP2/aug-cc-pVDZ 和 CCSD(T)/aug-cc-pVDZ 水平计算的 OH 伸缩势能,将测量的 OH 伸缩带的积分强度与局部模式模型进行比较。数据允许我们研究由于氢键的影响,OH 伸缩带位置和强度随倍频级数的变化。此外,在 MP2/aug-cc-pVDZ 水平上的计算表明,PFA 有三个稳定的构象,其相对能量分别为 0、13.54 和 13.76 kJ/mol。然而,在室温光谱中,我们只看到了来自最低能量构象的跃迁证据。呈现了最稳定构象的几何参数和振动频率。