Fast motion of the surface alcohol molecules deduced from sum-frequency vibrational spectroscopy

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초록

Sum-frequency generation (SFG) vibrational spectroscopy was used to investigate the surface of the homologue series of alcohols from methanol to octanol. It was found that SFG signal strengths from the terminal methyl group of short-chain alcohols cannot be explained by assuming the surface molecules are fixed in time. Introduction of the rotational motion with time scale comparable to the dephasing time of the vibrational mode of the terminal methyl group (similar to 0.7 ps) was able to explain the reduction of the SFG signal by motional averaging effect (Wei, X.; Shen, Y. R. Phys. Rev. Lett. 2001, 86, 4799). This time scale of motion increased with the increase in the molecule size and bulk viscosity.

키워드

LIQUID-VAPOR INTERFACEAIR-WATER-INTERFACEGENERATION SPECTROSCOPYROTATIONAL RELAXATIONDYNAMICSMETHANOLDERIVATIVES
제목
Fast motion of the surface alcohol molecules deduced from sum-frequency vibrational spectroscopy
저자
Sung, JaehoKim, Doseok
DOI
10.1021/jp0664263
발행일
2007-02-01
유형
Article
저널명
Journal of Physical Chemistry C
111
4
페이지
1783 ~ 1787