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Reaction of Paramagnetic Synthon,Lithiated 4,4,5,5‐Tetramethyl‐4,5‐dihydro‐1H‐imidazol‐1‐oxyl 3‐oxide,with Cyclic Aldonitrones of the Imidazole Series
Authors:Dr. Svyatoslav E. Tolstikov  Prof. Evgeny V. Tretyakov  Dmitry E. Gorbunov  Irina F. Zhurko  Prof. Matvey V. Fedin  Prof. Galina V. Romanenko  Dr. Artem S. Bogomyakov  Prof. Nina P. Gritsan  Dr. Dmitry G. Mazhukin
Affiliation:1. International Tomography Center, Novosibirsk, Russia;2. N. N. Vorozhtsov Institute of Organic Chemistry, Novosibirsk, Russia;3. Novosibirsk State University, Novosibirsk, Russia;4. V. V. Voevodsky Institute of Chemical Kinetics and Combustion, Novosibirsk, Russia
Abstract:
It was shown that dipole‐stabilized paramagnetic carbanion lithiated 4,4,5,5‐tetramethyl‐4,5‐dihydro‐1H‐imidazol‐1‐oxyl 3‐oxide can be attached in a nucleophilic manner to either isolated or conjugated aldonitrones of the 2,5‐dihydroimidazole 3‐oxide and 2H‐imidazole 1‐oxide series to afford adducts the subsequent oxidation of which leads to polyfunctional mono‐ and diradicals. According to XRD, at least two polymorphic modifications can be formed during crystallization of the resulting paramagnetic compounds, and for each of them, geometric parameters of the molecules are similar. An EPR spectrum of the diradical in frozen toluene has a complicated lineshape, which can be fairly well reproduced by using X‐ray diffraction structural analysis and the following set of parameters: D=14.9 mT, E=1.7 mT; tensor a(14N)=[0.260 0.260 1.625] mT, two equivalent tensors for the nitronyl nitroxide moiety a(14N)=[0.198 0.198 0.700] mT, and g≈2.007. According to our DFT and ab initio calculations, the intramolecular exchange in the diradical is very weak and most likely ferromagnetic.
Keywords:ab initio calculations  density functional calculations  diradicals  EPR spectroscopy  X-ray diffraction
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