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High-resolution mid-IR spectroscopy of (E)- AND (Z)-1,3-pentadiene using a quantum cascade laser
Stewart, Jacob
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https://hdl.handle.net/2142/104292
Description
- Title
- High-resolution mid-IR spectroscopy of (E)- AND (Z)-1,3-pentadiene using a quantum cascade laser
- Author(s)
- Stewart, Jacob
- Contributor(s)
- Tran, Minh Nhat
- Issue Date
- 2019-06-17
- Keyword(s)
- Vibrational structure/frequencies
- Abstract
- Samll conjugated dienes serve as one of the prototypical reactants in the Diels-Alder cyclization reaction commonly used in organic chemistry. These dienes exhibit an interesting conformational landscape where the lowest energy conformer is a \textit{trans} conformation with a \textit{gauche} conformer lying 10-15 kJ/mol higher in energy. The gauche conformer has only recently been unambiguously indentified as a non-planar structure in 1,3-butadiene (the simplest diene) by microwave spectroscopy.[1] We are interested in understanding the effect of the addition of functional groups on the conformational energy landscape of dienes. 1,3-pentadiene presents one of the simplest substitutions with the addition of a methyl group at the end of the 1,3-butadiene unit. We have measured room temperature high-resolution infrared spectra of both (E)- and (Z)-1,3-pentadiene using an external cavity quantum cascade laser (EC-QCL) in the range of 970-1010 \wn. These measurements represent the first high-resolution infrared spectra of these molecules reported to date, with individual rovibrational features exhibiting the Doppler-broadened linewidth of about 0.0016 \wn. Both (E)- and (Z)-pentadiene exhibit a strong C-type rovibrational band (due to a C-H wagging motion) in this region with a strong Q-branch. We will present our analysis of the rotational structure we have observed, which will provide experimental data to verify computational chemistry of these molecules.\\ [1] J.H. Baraban, M.-A. Martin-Drumel, et al., \textit{Angewandte Chemie}, \textbf{57}, 1821 (2018)
- Publisher
- International Symposium on Molecular Spectroscopy
- Type of Resource
- text
- Language
- eng
- Permalink
- http://hdl.handle.net/2142/104292
- DOI
- https://doi.org/10.15278/isms.2019.ML03
- Copyright and License Information
- Copyright 2019 Jacob Stewart
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