Plath Kathryn L, Takahashi Kaito, Skodje Rex T, Vaida Veronica
Department of Chemistry and Biochemistry, University of Colorado, Campus Box 215, Boulder, Colorado 80309, USA.
J Phys Chem A. 2009 Jul 2;113(26):7294-303. doi: 10.1021/jp810687t.
Pyruvic acid (CH(3)COCOOH) is an important keto acid present in the atmosphere. In this study, the vibrational spectroscopy of gas-phase pyruvic acid has been investigated with special emphasis on the overtone transitions of the OH-stretch, with Delta v(OH) = 2, 4, 5. Assignments were made to fundamental and combination bands in the mid-IR. The two lowest energy rotational conformers of pyruvic acid are clearly observed in the spectrum. The lowest energy conformer possesses an intramolecular hydrogen bond, while the next lowest rotational conformer does not. This difference is clearly seen in the spectra of the OH vibrational overtone transitions, and it is reflected in the anharmonicities of the OH-stretching modes for each conformer. The spectra of the OH-stretching vibration for both conformers were investigated to establish the effect of the hydrogen bond on frequency, intensity, and line width.
丙酮酸(CH(3)COCOOH)是大气中存在的一种重要的酮酸。在本研究中,对气相丙酮酸的振动光谱进行了研究,特别关注了OH伸缩振动的泛频跃迁,其中Δv(OH) = 2、4、5。对中红外区域的基频带和组合带进行了归属。在光谱中清晰地观察到了丙酮酸的两个能量最低的旋转异构体。能量最低的异构体具有分子内氢键,而能量次低的旋转异构体则没有。这种差异在OH振动泛频跃迁的光谱中清晰可见,并且反映在每个异构体的OH伸缩模式的非谐性上。研究了两种异构体的OH伸缩振动光谱,以确定氢键对频率、强度和线宽的影响。