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Theoretical study of the tautomerism of 8-azaadenine

โœ Scribed by J. Guillermo Contreras; Sandra T. Madariaga; Joel B. Alderete


Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
79 KB
Volume
11
Category
Article
ISSN
0894-3230

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โœฆ Synopsis


The prototropic tautomerism of 8-azaadenine (azaade) was studied theoretically by means of ab initio methods, in both the gas phase and aqueous solution. A number of tautomeric forms were not included in the calculations after applying a stepwise elimination procedure based on both AM1 and HF/6-31G* energy values. The tautomers 9H-azaade, 8H-azaade and 7H-azaade survived to this elimination and their optimized geometries and energies were calculated at the MP2/6-31*//HF/6-31G* level. To include the solvent effects, two self-consistent reaction field method were used: (1) Onsager's SCRF with multipolar expansion up to the hexadecapolar term and (2) the isodensity polarizable continuum method (IPCM). Both methods produce similar results, although the latter represents better the situation in aqueous solution. The stability order in solution, 8H-b 9H-b 7H-azaade, differs slightly from that found in the gas phase, implying that in general the electrostatic effects in solution are important, but the intrinsic stability of these species in the gas phase overcomes the solvent effect.


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## Abstract The semiempirical MINDO/3 method is employed to calculate the energies of various tautomers of model tautomeric compoundsโ€” 2โ€oxoโ€ and 4โ€oxopyridines and pyrimidines. The results are compared with experimental data in the gas phase, where the soluteโ€“solvent interactions not included in t