Trimethylene oxide. II. structure, vibration-rotation interaction, and origin of potential function for ring-puckering motion

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Abstract

In the previous paper of this series, the microwave spectra of four isotopic species of trimethylene oxide were investigated and the potential function for the puckering of the four-membered ring was determined. Further analysis of the data has now enabled the molecular structure to be calculated. The structural parameters deduced from the rotational constants are: r(C - C)=1.549±0.003 A, r(Cα - Hα)=1. 449±0.002 A, r(Cβ - Hβ)=1.091± 0.002 A, r(Cβ - Hβ)=1.100±0.003 A, ∠Cα - Cβ - Cα= 84°33′± 1′, ∠Cα - O - C α=91°59′±7′, ∠Cβ - Cβ - O=91°44′±3′, ∠H α - Cα - Hα= 110°18′±10′, ∠Hβ - Cβ - Hβ=110°44′±3′. The alpha-methylene planes are slightly deflected towards the oxygen atom away from the bisectors of the ∠ Cβ-Cα - O's. However, the actual angle of deflection is rather uncertain. Using these structural parameters, models have been constructed to calculate the vibration-rotation interaction due to the ring-puckering vibration. The experimentally observed rotational constant variations were found to be very well reproduced if the out-of-plane bending motion is assumed to follow a curvilinear path without any stretching of the C - C and C - O bonds. The potential function determined in the previous paper is also interpreted in terms of force fields within the molecule.

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Chan, S. I., Zinn, J., & Gwinn, W. D. (1961). Trimethylene oxide. II. structure, vibration-rotation interaction, and origin of potential function for ring-puckering motion. The Journal of Chemical Physics, 34(4), 1319–1329. https://doi.org/10.1063/1.1731739

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