## Abstract The reaction mechanism and solvent‐dependant regioselectivity of 1,3‐dipolar cycloaddition reactions between azide and acetylene derivatives have been studied using computational methods. The two possible reaction transition states were located. Geometry and NBO analysis found that the
Regioselectivity in cycloaddition reaction between phosphaacetylene and diazomethane: Anab initio study
✍ Scribed by Nyul�szi, L�szl�; V�rnai, P�ter; Eisfeld, Wolfgang; Regitz, Manfred
- Publisher
- John Wiley and Sons
- Year
- 1997
- Tongue
- English
- Weight
- 164 KB
- Volume
- 18
- Category
- Article
- ISSN
- 0192-8651
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✦ Synopsis
x The 3 q 2 cycloaddition reaction of phosphaacetylene with diazomethane was investigated by means of high level ab initio calculations. It was deduced that the aromatic diazaphosphole is formed via a nonaromatic intermediate. The regiospecificity of the reaction is thus determined by the energy difference between the two transition states that lead to the two possible regioisomeric intermediates. Of the transition states in the concerted pathways, the one Ž . leading to the regioisomer with two PC bonds 3 was found to be more stable at all the levels of theory investigated, including coupled-cluster singles doubles Ž .Ž . Ž . Ž CCSD T r6᎐311 q G*rrMøller᎐Plessett MP 2r6᎐311 q G* qbasis set . superposition, BSSE, correction . The energy difference between the two transition states, however, is always less than 2 kcalrmol. When the free energies in the two reactions are calculated by use of the harmonic frequencies, the energy separation between the two transition structures remains practically unchanged. The free energy of activation ⌬G ‡ was 21 kcalrmol at the Ž . CCSD T r6᎐311 q G* level of theory and use of the MP2r6᎐31 q G* frequencies. At the MP2 level, a rather stable complex is obtained in the initial phase of the reaction. However, the stability of the complexes decreases at the Ž . CCSD T level, and application of the BSSE correction results in unstable complexes.
📜 SIMILAR VOLUMES
Ab initio molecular orbital calculations at the MP2/6-31G\*//MP2/6-31G\* + ZPE level have been performed in order to explore the reaction between CH 3 OH 2 + and CH 3 OH. The detailed mechanism of proton transfer, CH 3 OH 2 + + CH 3 OH ® CH 3 OH + CH 3 OH 2 + , and of cationic nucleophilic substitut