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Radical Anions,Radical-Anion Salts,and Anionic Complexes of 2,1,3-Benzochalcogenadiazoles
Authors:Dr. Nikolay A. Pushkarevsky  Elena A. Chulanova  Prof. Dr. Leonid A. Shundrin  Dr. Anton I. Smolentsev  Dr. Georgy E. Salnikov  Dr. Elena A. Pritchina  Dr. Alexander M. Genaev  Dr. Irina G. Irtegova  Prof. Dr. Irina Yu. Bagryanskaya  Prof. Dr. Sergey N. Konchenko  Prof. Dr. Nina P. Gritsan  Prof. Dr. Jens Beckmann  Prof. Dr. Andrey V. Zibarev
Affiliation:1. Institute of Inorganic Chemistry, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia;2. Department of Natural Sciences, Novosibirsk State University., 630090 Novosibirsk, Russia

Institute of Organic Chemistry, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia;3. Department of Natural Sciences, Novosibirsk State University., 630090 Novosibirsk, Russia;4. Department of Natural Sciences, Novosibirsk State University., 630090 Novosibirsk, Russia

Institute of Chemical Kinetics and Combustion, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia;5. Institute of Organic Chemistry, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia;6. Institute of Chemical Kinetics and Combustion, Siberian Branch, Russian Academy of Sciences, 630090 Novosibirsk, Russia;7. Institute for Inorganic Chemistry and Crystallography, University of Bremen, 28359 Bremen, Germany

Abstract:By means of cyclic voltammetry (CV) and DFT calculations, it was found that the electron-acceptor ability of 2,1,3-benzochalcogenadiazoles 1 – 3 (chalcogen: S, Se, and Te, respectively) increases with increasing atomic number of the chalcogen. This trend is nontrivial, since it contradicts the electronegativity and atomic electron affinity of the chalcogens. In contrast to radical anions (RAs) [ 1 ].− and [ 2 ].−, RA [ 3 ].− was not detected by EPR spectroscopy under CV conditions. Chemical reduction of 1 – 3 was performed and new thermally stable RA salts [K(THF)]+[ 2 ].− ( 8 ) and [K(18-crown-6)]+[ 2 ].− ( 9 ) were isolated in addition to known salt [K(THF)]+[ 1 ].− ( 7 ). On contact with air, RAs [ 1 ].− and [ 2 ].− underwent fast decomposition in solution with the formation of anions [ECN], which were isolated in the form of salts [K(18-crown-6)]+[ECN] ( 10 , E=S; 11 , E=Se). In the case of 3 , RA [ 3 ].− was detected by EPR spectroscopy as the first representative of tellurium–nitrogen π-heterocyclic RAs but not isolated. Instead, salt [K(18-crown-6)]+2[ 3 -Te2]2− ( 12 ) featuring a new anionic complex with coordinate Te−Te bond was obtained. On contact with air, salt 12 transformed into salt [K(18-crown-6)]+2[ 3 -Te4- 3 ]2− ( 13 ) containing an anionic complex with two coordinate Te−Te bonds. The structures of 8 – 13 were confirmed by XRD, and the nature of the Te−Te coordinate bond in [ 3 -Te2]2− and [ 3 -Te4- 3 ]2− was studied by DFT calculations and QTAIM analysis.
Keywords:chalcogens  density functional calculations  heterocycles  main group elements  radical ions
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