TY - JOUR
T1 - Vibrational spectroscopic evidence of unconventional hydrogen bonds
AU - Fujii, Asuka
AU - Patwari, G. Naresh
AU - Ebata, Takayuki
AU - Mikami, Naohiko
PY - 2002/10/1
Y1 - 2002/10/1
N2 - In this article, infrared (IR) spectroscopic evidence for two classes of unconventional hydrogen bonds is presented. The first one involves drastic change in the hydrogen bonding properties in cationic states relative to neutral species. The phenol-benzene cluster shows an extremely high enhancement of π-hydrogen bonding interaction upon ionization. On the other hand, the benzene-water cluster shows a dramatic change from the π-hydrogen bonded to C-H···O type hydrogen bonded structure following ionization. In the case of alkyl phenols, the O-H stretching vibration of o-cis-isomer is shifted to a lower frequency upon ionization, which reflects the formation of an unconventional hydrogen bond of the type O-H···C, wherein the alkyl carbon acts as a proton acceptor. The second is novel hydrogen bonding between borane-amines and acidic protons. The vibrational spectra of O-H and N-H stretching vibrations in phenol and 2-pyridone (2PY), respectively, clearly indicate that these compounds act as proton donors to borane-amines. The experimental observations along with the density functional theoretical (DFT) calculation clearly establishes the formation of "dihydrogen bonding" between the O-H/N-H and B-H groups. Further, the two interacting hydrogens in a dihydrogen bond get eliminated as molecular hydrogen in the cluster cation leading to dehydrogenation reaction.
AB - In this article, infrared (IR) spectroscopic evidence for two classes of unconventional hydrogen bonds is presented. The first one involves drastic change in the hydrogen bonding properties in cationic states relative to neutral species. The phenol-benzene cluster shows an extremely high enhancement of π-hydrogen bonding interaction upon ionization. On the other hand, the benzene-water cluster shows a dramatic change from the π-hydrogen bonded to C-H···O type hydrogen bonded structure following ionization. In the case of alkyl phenols, the O-H stretching vibration of o-cis-isomer is shifted to a lower frequency upon ionization, which reflects the formation of an unconventional hydrogen bond of the type O-H···C, wherein the alkyl carbon acts as a proton acceptor. The second is novel hydrogen bonding between borane-amines and acidic protons. The vibrational spectra of O-H and N-H stretching vibrations in phenol and 2-pyridone (2PY), respectively, clearly indicate that these compounds act as proton donors to borane-amines. The experimental observations along with the density functional theoretical (DFT) calculation clearly establishes the formation of "dihydrogen bonding" between the O-H/N-H and B-H groups. Further, the two interacting hydrogens in a dihydrogen bond get eliminated as molecular hydrogen in the cluster cation leading to dehydrogenation reaction.
KW - Hydrogen bond
KW - Infrared
KW - Vibrational spectroscopy
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U2 - 10.1016/S1387-3806(02)00774-1
DO - 10.1016/S1387-3806(02)00774-1
M3 - Article
AN - SCOPUS:0036773633
SN - 1387-3806
VL - 220
SP - 289
EP - 312
JO - International Journal of Mass Spectrometry and Ion Processes
JF - International Journal of Mass Spectrometry and Ion Processes
IS - 2
ER -