| Literature DB >> 24778722 |
Mario Geffe1, Lars Andernach1, Oliver Trapp2, Till Opatz1.
Abstract
Surprisingly stable formamide rotamers were encountered in theEntities:
Keywords: amides; density functional calculations; dynamic HPLC; rotamers; thermodynamics
Year: 2014 PMID: 24778722 PMCID: PMC3999880 DOI: 10.3762/bjoc.10.63
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Synthesis of formamide 4. Reagents and conditions: a) KHMDS, THF, −78 °C; then: NaBH4, MeOH, 63%. b) HCOOEt, reflux, quant.
Figure 1Equilibration of the Z-rotamer of 4 at 293 K.
Figure 2Equilibration of the E-rotamer of 4 at 293 K.
Figure 3Elution profiles obtained by temperature-dependent DHPLC measurements of 4.
Figure 4Eyring plot obtained by temperature dependent DHPLC measurements of 4.
Figure 5Potential energy surface scan graph for the dihedral angle O–C–N–C1 () in 4 (BP-D3/def2-SVP).
Relative Gibbs free energy (kJ/mol) for E-4, Z-4, TS1, TS2, GSDMF, TS1DMF and TS2DMF in the gas phase and with COSMO solvation for hexane, ethanol and DMSO at 298 K (BP-D3/def2-SVP).
| gas phase | hexane | ethanol | DMSO | |
| 0 | 0 | 0 | 0 | |
| TS1 | +107.3 | +108.8 | +109.0 | +110.0 |
| TS2 | +102.1 | +105.5 | +109.8 | +110.4 |
| +5.8 | +3.2 | +2.7 | +3.1 | |
| GSDMF | 0 | 0 | 0 | 0 |
| TS1DMF | +99.7 | +100.8 | +103.7 | +103.9 |
| TS2DMF | +102.0 | +104.4 | +110.2 | +110.7 |
Figure 6Energy differences and geometries for E- and Z-4 and both transition states (TS1 and TS2) in hexane. The dihedral angle of O–C–N–C1 () and the C–N bond length are given for each state (BP-D3/def2-SVP).