2003
DOI: 10.1016/s0022-2852(03)00018-3
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Vibrational spectroscopy of cis- and trans-formic acid in solid argon

Abstract: Absorption spectra of cis and trans conformers of formic acid (HCOOH) isolated in solid argon are analyzed in the mid-infrared (4000-400 cm À1 ) and near-infrared (7800-4000 cm À1 ) regions. The HCOOH absorption spectrum reveals matrix-site splitting for the trapped molecule. Narrowband tunable infrared radiation is used to pump a suitable vibrational transition of the trans conformer in order to promote site-selectively the conversion to the cis conformer and separate the spectral features of each site group.… Show more

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Cited by 121 publications
(121 citation statements)
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“…Similar splitting of the νC-O or δCOH bands due to Fermi resonance was reported for formic and acetic acids. 6,38 In the 3300-1100 cm -1 spectral window available for observation of the C t conformer, the bands assigned to this form are observed at ∼1800 cm -1 (νCdO), ∼1360 cm -1 (ωCH 2 ), and ∼1156 cm -1 (νC-O), in good agreement with the computational values of 1773, 1361, and 1134 cm -1 , respectively (Figure 4). In addition, two doublets are observed at ∼1276 and ∼1248 cm -1 , which are ascribed to δCOH, predicted at 1254 cm -1 .…”
Section: Computational Resultssupporting
confidence: 82%
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“…Similar splitting of the νC-O or δCOH bands due to Fermi resonance was reported for formic and acetic acids. 6,38 In the 3300-1100 cm -1 spectral window available for observation of the C t conformer, the bands assigned to this form are observed at ∼1800 cm -1 (νCdO), ∼1360 cm -1 (ωCH 2 ), and ∼1156 cm -1 (νC-O), in good agreement with the computational values of 1773, 1361, and 1134 cm -1 , respectively (Figure 4). In addition, two doublets are observed at ∼1276 and ∼1248 cm -1 , which are ascribed to δCOH, predicted at 1254 cm -1 .…”
Section: Computational Resultssupporting
confidence: 82%
“…The observed shifts are also in agreement with the available data for acetic acid, where a change in conformation from the trans to the cis arrangement around the C-O bond leads to blue shifts in these modes of 44 and 30 cm -1 , respectively. 6,38 In the case of T g ( , both the νOD and νCdO modes were predicted to be shifted from those of T t by less than 1 cm -1 . Accordingly, the bands assigned to this conformer are observed at 2627 (νOD) and 1780-1760 cm -1 (νCdO, quartet), which are close to the corresponding bands of T t observed at 2630/2631 and 1770-1762 cm -1 , respectively.…”
Section: Computational Resultsmentioning
confidence: 95%
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