The participation of states with the predominant contribution of tautomeric anthraquinoid resonance structures in ionization of 1-hydroxy- and 1,4-, 1,5-, and 1,8-dihydroxy-9,10-anthraquinones was demonstrated by quantum-chemical and correlation methods. Solvation increases the probability of formation of such structures. The bands corresponding to anthraquinoid tautomers were revealed in the experimental absorption spectra of the ionized compounds. Published data on the pH dependence of the ratio of neutral molecules, monoanions, and dianions, obtained without taking into account tautomeric structures, require revision
Fine structure of πl,π absorption of mono- and dications derived from 1,5- and 1,8-dihydroxyanthraqu...
Natural 1,5-di-, 1,4,5-tri-, and 1,4,5,8-tetrahydroxyanthraquinones and their anions and metal compl...
Existing views on the deprotonation and complexation of 1-amino-4-hydroxyanthraquinone are wrong. Th...
The participation of states with the predominant contribution of tautomeric anthraquinoid resonance ...
1,4,5,8-Tetrahydroxy-9,10-anthraquinone and its alkyl derivatives exist as equilibrium mixtures of p...
Tautomerism of β-mono-, β,β'-dihydroxyanthraquinones, and their anions was studied for the first tim...
According to the results of quantum-chemical and correlation studies, ionized states of Alizarin and...
Anthraquinoid tautomers participate in the ionization of purpurin. The tautomerism takes place in bo...
The effect of substituents R on the tautomerism and electronic absorption spectra of 1-hydroxy-x-R-9...
1,2,3-Trihydroxy-9,10-anthraquinone (anthragallol) exists as an equilibrium mixture of the 9,10-, 2,...
The 9,10-1,10-anthraquinoid tautomer was found to be characteristic of physcion and emodin and their...
The fine structure of experimental πl,π*-absorption bands of the α hydroxyanthraquinones originates ...
Metal complexes with 1,5-dihydroxy-9,10-anthraquinone are studied by the spectrophotometric, quantum...
The structures of metal complexes with 1,8-dihydroxyanthraquinones studied by spectrophotometric, qu...
Existence of chrysophanol, aloe-emodin, and rhein in solutions as primarily the 9,10-anthraquinoid f...
Fine structure of πl,π absorption of mono- and dications derived from 1,5- and 1,8-dihydroxyanthraqu...
Natural 1,5-di-, 1,4,5-tri-, and 1,4,5,8-tetrahydroxyanthraquinones and their anions and metal compl...
Existing views on the deprotonation and complexation of 1-amino-4-hydroxyanthraquinone are wrong. Th...
The participation of states with the predominant contribution of tautomeric anthraquinoid resonance ...
1,4,5,8-Tetrahydroxy-9,10-anthraquinone and its alkyl derivatives exist as equilibrium mixtures of p...
Tautomerism of β-mono-, β,β'-dihydroxyanthraquinones, and their anions was studied for the first tim...
According to the results of quantum-chemical and correlation studies, ionized states of Alizarin and...
Anthraquinoid tautomers participate in the ionization of purpurin. The tautomerism takes place in bo...
The effect of substituents R on the tautomerism and electronic absorption spectra of 1-hydroxy-x-R-9...
1,2,3-Trihydroxy-9,10-anthraquinone (anthragallol) exists as an equilibrium mixture of the 9,10-, 2,...
The 9,10-1,10-anthraquinoid tautomer was found to be characteristic of physcion and emodin and their...
The fine structure of experimental πl,π*-absorption bands of the α hydroxyanthraquinones originates ...
Metal complexes with 1,5-dihydroxy-9,10-anthraquinone are studied by the spectrophotometric, quantum...
The structures of metal complexes with 1,8-dihydroxyanthraquinones studied by spectrophotometric, qu...
Existence of chrysophanol, aloe-emodin, and rhein in solutions as primarily the 9,10-anthraquinoid f...
Fine structure of πl,π absorption of mono- and dications derived from 1,5- and 1,8-dihydroxyanthraqu...
Natural 1,5-di-, 1,4,5-tri-, and 1,4,5,8-tetrahydroxyanthraquinones and their anions and metal compl...
Existing views on the deprotonation and complexation of 1-amino-4-hydroxyanthraquinone are wrong. Th...