Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10619198 | Synthetic Metals | 2005 | 7 Pages |
Abstract
This work reports a quantum mechanical investigation of the effects produced by the N-hydroxyalkyl substitution on the molecular and electronic structure of pyrrole-containing oligomers. First, the molecular geometry, torsional potential, ionization potential and Ï-Ï* transition energy predicted for N,Nâ²-dihydroxymethyl-2,2â²-bipyrrole and N,Nâ²-dihydroxypropyl-2,2â²-bipyrrole have been compared with those obtained for 2,2â²-bipyrrole and N,Nâ²-dimethyl-2,2â²-bipyrrole. After this, the properties of pyrrole and N-hydroxymethylpyrrole-containing oligomers formed by n repeating units, where n ranges from 1 to 5, have been examined. Results are explained as a combined actuation of electron donation effects induced by the hydroxyl groups, repulsive steric interactions generated by the N-substitution and attractive specific interactions associated to the hydroxyl groups.
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Authors
Jordi Casanovas, Liu Yao Cho, Cintia Ocampo, Carlos Alemán,