TY - JOUR
T1 - Infrared spectroscopy of propene in solid para-hydrogen and helium droplets
T2 - The role of matrix shifts in the analysis of anharmonic resonances
AU - Pullen, Gregory T.
AU - Franke, Peter R.
AU - Lee, Yuan-Pern
AU - Douberly, Gary E.
N1 - Publisher Copyright:
© 2018 Elsevier Inc.
PY - 2018/12
Y1 - 2018/12
N2 - The infrared spectrum of propene in the CH stretching region is complicated by anharmonic resonance polyads associated with the coupling of CH stretch fundamentals to overtones and combinations of CHn bends and CC stretches. We report the spectra of propene isolated in both helium nanodroplets (HENDI) and solid para-hydrogen (p-H2). Spectral assignments and anharmonic polyad memberships are obtained with a VPT2+K effective Hamiltonian. In the 2800–3120 cm−1 region, the average differential matrix shift in going from HENDI to p–H2 is ∼4.4 cm−1 to the red, with a standard deviation of 1.9 cm−1. Moreover, the choice of matrix environment influences the positions and intensity ratios of transitions within the resonance polyads. Two-state interaction models are used to confirm that differential matrix shifts less than 10 cm−1 are sufficient to account for the observed differences.
AB - The infrared spectrum of propene in the CH stretching region is complicated by anharmonic resonance polyads associated with the coupling of CH stretch fundamentals to overtones and combinations of CHn bends and CC stretches. We report the spectra of propene isolated in both helium nanodroplets (HENDI) and solid para-hydrogen (p-H2). Spectral assignments and anharmonic polyad memberships are obtained with a VPT2+K effective Hamiltonian. In the 2800–3120 cm−1 region, the average differential matrix shift in going from HENDI to p–H2 is ∼4.4 cm−1 to the red, with a standard deviation of 1.9 cm−1. Moreover, the choice of matrix environment influences the positions and intensity ratios of transitions within the resonance polyads. Two-state interaction models are used to confirm that differential matrix shifts less than 10 cm−1 are sufficient to account for the observed differences.
KW - Anharmonic resonance polyads
KW - Effective Hamiltonian calculations
KW - Helium nanodroplet isolation
KW - Para-Hydrogen matrix isolation
KW - Propene infrared spectroscopy
UR - http://www.scopus.com/inward/record.url?scp=85054306808&partnerID=8YFLogxK
U2 - 10.1016/j.jms.2018.09.007
DO - 10.1016/j.jms.2018.09.007
M3 - Article
AN - SCOPUS:85054306808
SN - 0022-2852
VL - 354
SP - 7
EP - 14
JO - Journal of Molecular Spectroscopy
JF - Journal of Molecular Spectroscopy
ER -