Ring puckering in five membered rings: The microwave spectrum, dipole moment and barrier to pseudorotation in 1,3-dioxolane☆
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- Type
- article
- Published
- 1974-01-01
- Cited by
- 38
- References
- 17
- OpenAlex
- https://openalex.org/W1988707194
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120974804
Keywords
Pseudorotation, Potential energy, Dipole, Bent molecular geometry, Rotational spectroscopy
References
- Vibration-rotation interactions in cyanamide; the question of planarity of amides
- Spectroscopic Determination of the Barrier to Planarity in Cyclopentane
- Far‐Infrared Spectrum and the Barrier to Pseudorotation of Silacyclopentane
- Microwave Spectrum, Vibration—Rotation Interaction, and Potential Function for the Ring‐Puckering Vibration of Trimethylene Sulfide
- Far‐Infrared Spectra and Structure of Small Ring Compounds. VIII. Pseudorotation in 1,3‐Dioxolane
- Vibration-rotation interaction in the microwave spectrum of cyclopentene
- Vibrational spectra and structure of small ring compounds silacycolpentane
- Vibrational Spectra and Structure of Small-Ring Compounds. X. Spectroscopic Evidence for Pseudorotation in Cyclopentane
- Ring Puckering in Five‐Membered Rings. I. General Theory
- Vibration—Rotation Interactions and the Choice of Rotating Axes for Polyatomic Molecules
- Spectra and Structure of Small Ring Compounds. XIX. Vibrational Analysis and the Barrier to Pseudorotation of Germylcyclopentane
- Rotation–Vibration Interaction and Barrier to Ring Inversion in Cyclopentene
- Far‐Infrared Absorption Spectrum and Pseudorotation of the Thiacyclopentane Molecule
- Far‐Infrared Spectrum of Tetrahydrofuran: Spectroscopic Evidence for Pseudorotation
- Ring Puckering in Five‐Membered Rings. II. The Microwave Spectrum, Dipole Moment, and Barrier to Pseudorotation in Tetrahydrofuran
- Spectroscopic Evidence for Pseudorotation. II. The Far‐Infrared Spectra of Tetrahydrofuran and 1,3‐Dioxolane
- Far‐Infrared Spectra of Ring Compounds. VIII. The Effect of a Finite Central Barrier on Pseudorotation in Five‐Membered Rings
Cited by
- Microwave Spectrum and Hindered Pseudorotation of Tetrahydrofuran
- Homoleptic aminophenolates of Zn, Mg and Ca. Synthesis, structure, DFT studies and polymerization activity in ROP of lactides.
- Analysis of the conformational preferences of (4R,5R)-4,5-bis(alkylcarbamoyl)-1,3-dioxolanes
- Nuclear magnetic resonance study of the molecular structure of 1,3-benzodioxole and 1,3-indandione partially oriented in nematic solvents
- ROTATIONAL SPECTRUM OF 1,3-DIOXOLANE-ARGON
- CONFORMATION OF SATURATED SEVEN-MEMBERED RINGS : FREE JET ABSORPTION MILLIMETER WAVE SPECTRUM OF 1,3-DIOXEPANE
- Rotational Spectrum of 1,3-Dioxolane-Argon: A Fourier Transform Investigation.
- Microwave spectrum of ?-valerolactone
- Rotational spectrum, ring-puckering vibration and ab initio calculations on tetrahydrothiophene
- Ring puckering of p. dioxane: A three dimensional approach
- The microwave spectrum of pyrrolidine
- Observed bands in Raman and infrared spectra of 1, 3- dioxolane and their assignments
- Empirical force field calculations. Part 28. Conformations and pseudorotations of 1,3-dioxolane and some methyl-substituted derivatives†
- Theoretical Determination of Molecular Structure and Conformation. XI. The Puckering of Oxolanes
- PSEUDOROTATION PATHWAY AND EQUILIBRIUM STRUCTURE FROM THE ROTATIONAL SPECTRUM OF JET-COOLED TETRAHYDROFURAN
- Infrared spectra from 300 to 10 cm−1 of structure II clathrate hydrates at 4.3 °K
- Ab initio study of the pseudorotation in 1,3-dioxolane☆
- Free Jet Absorption Millimeter Wave Spectrum of Pyrrolidine: Assignment of a Second, Equatorial, the Most Stable Conformer.
- The absorption spectroscopy of the lowest pseudorotational states of tetrahydrofuran
- Observation of bands among the four lowest pseudorotational states of 1,3-dioxolane
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