| Literature DB >> 24453106 |
Sławomir Szymański1, Piotr Paluch, Daniel T Gryko, Agnieszka Nowak-Król, Wojciech Bocian, Jerzy Sitkowski, Beata Koszarna, Justyna Śniechowska, Marek J Potrzebowski, Lech Kozerski.
Abstract
Tris(pentafluorophenyl)corrole and its (15)N-enriched isotopomer were studied in [D8]toluene solution by 1D and 2D variable-temperature NMR techniques to establish the mechanisms of tautomerization of the NH protons inside the interior of the corrole macrocycle. Three such rate processes could be identified of which two modulate the spectral line shapes at temperatures above 205 K and the third is NMR-inaccessible as it is very fast. The latter involves the proton engaged in an unsymmetrical proton sponge unit formed by two pyrrole nitrogen atoms. Temperature and concentration dependences of the two remaining processes were determined. One of them is purely intramolecular and the other is intermolecular at low temperatures, with growing contribution of an intramolecular mechanism at elevated temperatures. The proposed microscopic mechanisms of all these processes are semi-quantitatively confirmed by quantum chemical calculations using density functional theory.Entities:
Keywords: NMR spectroscopy; corroles; hydrogen bonds; line-shape analysis; tautomerism
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Year: 2014 PMID: 24453106 DOI: 10.1002/chem.201303406
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236