Theoretical study of the internal rotation of the hydroxylic group of the enol form of guanine
Author
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Cadet, Jean
Author
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Grand, André
Author
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Morell, Christophe
Author
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Letelier, Jorge R.
Author
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Moncada, José Luis
Author
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Toro Labbé, Alejandro
Admission date
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2018-12-20T14:26:54Z
Available date
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2018-12-20T14:26:54Z
Publication date
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2003
Cita de ítem
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Journal of Physical Chemistry A, Volumen 107, Issue 27, 2018, Pages 5334-5341
Identifier
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10895639
Identifier
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10.1021/jp021976w
Identifier
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https://repositorio.uchile.cl/handle/2250/156044
Abstract
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Emphasis was placed in the present work on a density functional theory and Hartree-Fock study of the internal rotation of the hydroxylic group of the enol form of guanine. This was achieved by monitoring the behavior of energy, chemical potential, hardness, electrophilicity, and polarizability along the torsional coordinate. An energy barrier of about 9.5 kcal/mol was found about midway between two stable planar conformations. The analysis of the behavior of reactivity descriptors shows that the principles of maximum hardness and minimum polarizability are satisfied. Very good linear relations have been established between energy, chemical potential, hardness, and electrophilicity power allowing the characterization of the rotational process in terms of the simultaneous change of these global properties.