Conformational structures of jet-cooled acetaminophen-water clusters: a gas phase spectroscopic and computational study
Jet-cooled acetaminophen (AAP)-water clusters, AAP-(H O) , were investigated by mass-selected resonant two-photon ionization (R2PI), ultraviolet-ultraviolet hole-burning (UV-UV HB), infrared-dip (IR-dip), and infrared-ultraviolet hole-burning (IR-UV HB) spectroscopy. Each syn- and anti-AAP rotamer h...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2017, Vol.19 (6), p.4840-4848 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Jet-cooled acetaminophen (AAP)-water clusters, AAP-(H
O)
, were investigated by mass-selected resonant two-photon ionization (R2PI), ultraviolet-ultraviolet hole-burning (UV-UV HB), infrared-dip (IR-dip), and infrared-ultraviolet hole-burning (IR-UV HB) spectroscopy. Each syn- and anti-AAP rotamer has three distinctive binding sites (-OH, >CO, and >NH) for a water molecule, thus 6 different AAP-(H
O)
conformers are expected to exist in the molecular beam. The origin bands of the AAP(OH)-(H
O)
and AAP(CO)-(H
O)
conformers (including their syn- and anti-conformers) in the R2PI spectrum are shifted to red and blue compared to those of the AAP monomer, respectively. These frequency shifts upon complexation between a water molecule and a specific binding site of AAP are also predicted by theoretical calculations. The spectral assignments of the origin bands in the R2PI spectra and the IR vibrational bands in the IR-dip spectra of the four lowest-energy conformers of AAP-(H
O)
, [syn- and anti-AAP(OH)-(H
O)
and syn- and anti-AAP(CO)-(H
O)
], are aided by ab initio and time-dependent density functional theory (TDDFT) calculations. Further investigation of the IR-dip spectra has revealed a hydrogen-bonded NH stretching mode, supporting the presence of the syn-AAP(NH)-(H
O)
conformer. Moreover, by employing IR-UV HB spectroscopy, we have reconfirmed the existence of the syn-AAP(NH)-(H
O)
conformer, which happened to be buried underneath the broad background contributed by the AAP(OH)-(H
O)
conformers. These observations have led us to conclude that all of the possible conformers of AAP-(H
O)
have been found in this study. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/c6cp06863d |