Conformational enthalpies, ΔH°[axial/equatorial], of 3- and 4-METHYLCYCLOHEXANONE (cas 1331-22-2)
-
Add time:08/23/2019 Source:sciencedirect.com
Methylcyclohexanone exists primarily in its most stable chair form at ambient temperatures. Two chair conformers exist in which the methyl group may be either axially or equatorially oriented. The conformational energy difference between these is dominated by non-bonded interactions. Several theoretical methods were undertaken to model the conformational enthalpy, ΔH°, including molecular mechanics (MM), ab initio molecular orbital, and density functional theories (DFT). Ab initio methods include HF/6-31G*, HF/6-311G**, HF/6-311+G(3df,2p), MP2-fu/6-31G*, MP2-fu/6-31+G*, and G2(MP2) levels of theory. A hybrid theoretical model, G2(MP2,SVP), was found to give nearly identical results to G2(MP2) theory. The DFT methods included B3-LYP/6-31G*, B3-LYP/6-311+G(3df,2p), B3-PW91/6-31G*, and B3-PW91/6-311+G(3df,2p). The theoretical results are compared with recent gas-phase experimental measurements from our laboratory. The conformational energy between the more stable equatorial conformer and the less stable axial conformer has been measured by resonance-enhanced multiphoton ionization spectroscopy to be 1.55±0.12 and 2.1±0.2 kcal mol−1 for 3- and 4-methylcyclohexanone, respectively. There is excellent agreement between these experimental values and the MM and DFT methods. A less satisfactory agreement is made for the MP2 and G2(MP2) methods.
We also recommend Trading Suppliers and Manufacturers of METHYLCYCLOHEXANONE (cas 1331-22-2). Pls Click Website Link as below: cas 1331-22-2 suppliers
Prev:Regular ArticleMicrowave Spectrum of 2-METHYLCYCLOHEXANONE (cas 1331-22-2)
Next:Anodic oxidation of 2- and 3-METHYLCYCLOHEXANONE (cas 1331-22-2)s) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- 3-METHYLCYCLOHEXANONE (cas 1331-22-2) thiosemicarbazone: Determination of E/Z isomerization barrier by dynamic high-performance liquid chromatography, configuration assignment and theoretical study of the mechanisms involved by the spontaneous, acid and base catalyzed processes08/26/2019
- The effect of temperature on the lipase-catalyzed asymmetric protonation of 1-acetoxy-2-methylcyclohexene giving (R)-2-METHYLCYCLOHEXANONE (cas 1331-22-2)08/25/2019
- Anodic oxidation of 2- and 3-METHYLCYCLOHEXANONE (cas 1331-22-2)s08/24/2019
- Regular ArticleMicrowave Spectrum of 2-METHYLCYCLOHEXANONE (cas 1331-22-2)08/22/2019
- Contributions of dispersion forces to R-3-METHYLCYCLOHEXANONE (cas 1331-22-2) physisorption on low and high Miller index Cu surfaces08/21/2019
- ORIGINAL ARTICLESynthesis, spectroscopic characterization of some Schiff base complexes derived from 2-METHYLCYCLOHEXANONE (cas 1331-22-2) and their activity against some fungi08/20/2019
- Clathrate hydrate formation in (methane + water + METHYLCYCLOHEXANONE (cas 1331-22-2)) systems: the first phase equilibrium data08/19/2019
- Original articleSynthesis of some thiopyrimidine and thiazolopyrimidines starting from 2,6-dibenzylidene-3-METHYLCYCLOHEXANONE (cas 1331-22-2) and its antimicrobial activities08/18/2019
- Solvent, temperature and concentration effects on the optical rotatory dispersion of (R)-3-METHYLCYCLOHEXANONE (cas 1331-22-2)08/17/2019


