UV–Vis spectra and structure of acid-base forms of dimethylamino- and aminoazobenzene


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Abstract

The changes in the UV–Vis absorption spectra of dimethylaminoazobenzene (DAB) in the cellulose triacetate (CTA) matrix during the absorption of gaseous hydrogen chloride and protonation of DAB in weakly and strongly acid solutions of hydrochloric and sulfuric acids were studied. The yellow-orange color of DAB and its analog aminoazobenzene (AAB) was shown to be due to the dimers, whose structure involves phenylaminyl type cations formed due to the promotion of the sp2 electrons of the azo groups to the Rydberg R3s orbitals of the azo groups and possessing Vis bands at 400–417 nm. The cations exist immanently as the dimers due to the Rydberg intermonomer bonds; the Vis bands of the dimers shifted toward 500–520 nm under the action of HCl (in CTA) and weakly acid media as a result of the formation of phenyl aminyl type pair cations, whose π* levels are split by Simpson’s mechanism, during the protonation of interrelated monomers. In the concentrated sulfuric acid, the Vis bands at 500–520 nm vanished because of the decomposition of the dimers into diprotonated monomers possessing Vis bands at 400–417 nm. The mechanism of transformations of chromogens responsible for the spectral transformation was given.

About the authors

Yu. A. Mikheev

Emanuel Institute of Biochemical Physics

Author for correspondence.
Email: mik@sky.chph.ras.ru
Russian Federation, Moscow, 119334

L. N. Guseva

Emanuel Institute of Biochemical Physics

Email: mik@sky.chph.ras.ru
Russian Federation, Moscow, 119334

Yu. A. Ershov

Bauman Moscow State Technical University

Email: mik@sky.chph.ras.ru
Russian Federation, Moscow, 105005

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