Theoretical investigations of the proton transfer reaction in hydrogen-bonded complexes of cytosine with HNO
β Scribed by Andrzej L. Sobolewski; Ludwik Adamowicz
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 490 KB
- Volume
- 234
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
The potential energy (PE) functions of the lowest singlet and triplet states of the hydrogen-bonded complexes of cytosine with HNO and NOH were theoretically investigated along the proton transfer (PT) coordinate. A full geometry optimization was performed along the PT reaction path at the Hartree-Fock level of theory. The energies at the optimized geometries were calculated with the use of second-order MΒ’ller-Plesset perturbation theory (MP2) and with second-order perturbation theory employing the complete active space self-consistent field wavefunction as the reference (CASPT2). It was found that the cyclic complex of the 'native' amino-oxo form of cytosine with NOH can be exothermally transformed on the barrierless PE surface into the complex of the 'rare' imino-oxo form with HNO. The results provide a model of a chemically induced PT reaction in nucleic acid bases which can effectively generate their 'rare' tautomeric forms.
π SIMILAR VOLUMES
## Abstract Scalar coupling constants have been computed using the EOMβCCSD method for equilibrium structures of complexes stabilized by Fο£ΏHβ¦P hydrogen bonds, as well as structures along the protonβtransfer coordinates of these complexes. Variations in the signs and absolute values of ^1^__J__(Fο£ΏH)
TIus study IS concerned wrth proton-trvnsfer photoreactrons III hydrogen-bonded complexes and the formatlon of Ionized forms of naphthols in the ground state, m the presence of crown ethers. It has been found that a loss m electroruc excltatton energy may occur during the proton transfer m the hydro