Ab initio study of anionic oxy – cope , thioxy- cope and seloxy-cope rearrangements

Document Type : Original Article

Author

10.22036/cr.2020.204345.1092

Abstract

In this work ,ab initio quantum mechanic method (B3LYP/6-311++G**) was used to investigate the impact of the electronic resonance on the cope rearrangement reaction in hexa- 1,5- diene- 3- olate (1) , hexa- 1,5- diene- 3 thiolate(2) and hexa- 1,5- diene-3- selenolate (3) . B3LYP/6-311++G** results show that the energy barrier of the cope rearrangement reaction decreases fromcomound1 to compound 3 . Also, the NMR results obtained showed that the calculated NICS(0) values of the chair like transition state structures containing axial O- , S- and Se- groups are -14.7851 , -8.5457 and -5.5876 ppm , respectively. The calculated NICS(0) values for the chair like transision state structures containing equatorial O- , S- and Se- groups are -15.0750 , -14,1705 and 7.8536 ppm , respectively . Based on the NMR results obtained , NICS(0) increases from the transistion state structure of compound 1 to compound 3 . This fact explains the decrease of the aromatic character from the transition state structure of compound 1 to compound 3 . Accordingly , based on the results obtained from this work , the decrease of the aromatic character of the transition structures increases their corresponding energies and increases the cope rearrangement barrier heights from compound 1 to compound 3

Graphical Abstract

Ab initio study of anionic oxy – cope , thioxy- cope  and seloxy-cope rearrangements

Keywords


1D. Evans , A. Golob, 3, 3 Sigmatropic rearrangements of 1, 5-diene alkoxides. Powerful accelerating effects of the alkoxide substituent. Journal of the American Chemical Society, 1975. 97(16): p. 4765-4766.
2R.M, Coates I.M. Said, Decarboxylative 1-aza-1'-oxa 3, 3 sigmatropic rearrangements of enolizable or enolized N-aryl-N, O-diacylhydroxylamines to o-(N-acylamino) aryl ketones, esters, and amides: a new synthetic method for ortho alkylation. Journal of the American Chemical Society, 1977. 99(7): p. 2355-2357.
3A. Ramirez, X. Sun, D.B. Collum, Lithium diisopropylamide-mediated enolization: Catalysis by hemilabile ligands. Journal of the American Chemical Society, 2006. 128(31): p. 10326-10336.
4S. Boys, S. et al., Automatic fundamental calculations of molecular structure. Nature, 1956. 178(4544): p. 1207.
5M.Monajjemi, et al., NMR and NBO calculation of benzimidazoles and pyrimidines: Nano physical parameters investigation. International Journal of Physical Sciences, 2012. 7(13): p. 2010-2031.
6R. Mulliken, et al., Formulas and numerical tables for overlap integrals. The Journal of Chemical Physics, 1949. 17(12): p. 1248-1267.
7A.R Belverdi, et al., Novel donor-acceptor non-fullerene metal-organic solar cells: A first DFT and TD-DFT study. Physica B: Condensed Matter, 2018. 542: p. 37-43.