4.8 Article

Molecular Structure and Chirality Detection by Fourier Transform Microwave Spectroscopy

期刊

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
卷 6, 期 1, 页码 196-200

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jz502312t

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资金

  1. U.S. National Science Foundation (NSF) [CHE-0960074, CHE-1213200]
  2. Swiss National Science Foundation [PBBEP2-144907]
  3. Marie Curie fellowship [PIOF-GA-2012-328405]
  4. Direct For Mathematical & Physical Scien [1213200] Funding Source: National Science Foundation

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We describe a three-wave mixing experiment using time-separated microwave pulses to detect the enantiomer-specific emission signal of the chiral molecule using Fourier transform microwave (FTMW) spectroscopy. A chirped-pulse FTMW spectrometer operating in the 2-8 GHz frequency range is used to determine the heavy-atom substitution structure of solketal (2,2-dimethyl-1,3-dioxolan-4-yl-methanol) through analysis of the singly substituted C-13 and O-18 isotopologue rotational spectra in natural abundance. A second set of microwave horn antennas is added to the instrument design to permit three-wave mixing experiments where an enantiomer-specific phase of the signal is observed. Using samples of R-, S-, and racemic solketal, the properties of the three-wave mixing experiment are presented, including the measurement of the corresponding nutation curves to demonstrate the optimal pulse sequence.

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