Relationship between Infrared Peak Maximum Position and Molecular Interactions

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초록

We explored the interpretation of the well-accepted correlation between the apparent peak maximum position shift and extent of molecular interactions, like hydrogen bonding and dipole-dipole interactions, based on the overlapped multiple band model. The simulation of two overlapped Lorentzian bands was carried out to interpret how the maximum position of a composite peak relates to the relative contributions of two species representing the different levels of molecular interactions, i.e., free (or very weekly bound) vs. strongly bound. To demonstrate the validity of our interpretation of the origin of the peak position shift, the temperature-dependent IR spectra of ethylene glycol were also analyzed. It was found through the analysis of simulated and experimental spectra that the apparent peak shift in certain case can be safely interpreted as the measure of the strength of hydrogen bonding. The result of this study gives a new insight to interpret molecular interactions probed by vibrational spectroscopy.

키워드

Frequency shiftsOverlapped bandsSelf-modeling curve resolution (SMCR)Hydrogen bondingMolecular interaction2-DIMENSIONAL CORRELATION-ANALYSISRELATIVE INTENSITY CHANGESOVERLAPPED BANDSSPECTRAL CHANGESFREQUENCY-SHIFTFLUCTUATION
제목
Relationship between Infrared Peak Maximum Position and Molecular Interactions
저자
Ryu, Soo RyeonNoda, IsaoJung, Young Mee
DOI
10.5012/bkcs.2011.32.11.4011
발행일
2011-11-20
유형
Article
저널명
Bulletin of the Korean Chemical Society
32
11
페이지
4011 ~ 4015