THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS

The purpose was to investigate the formation of complex compounds in heteropolytungtoterbiate-ion solutions and to consider thermodynamic probability of these reactions. Methods and methodology. pH-potentiometry at 25±0.1 °C was used to study interactions within TbW10O36 9––H+(OH–)–H2O system. A mo...

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Main Authors: Ignatуeva Victoria V., Rosantsev Georgei M., Vavilova Svetlana M.
Format: Article
Language:English
Published: Voronezh State University 2017-06-01
Series:Конденсированные среды и межфазные границы
Subjects:
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author Ignatуeva Victoria V.
Rosantsev Georgei M.
Vavilova Svetlana M.
author_facet Ignatуeva Victoria V.
Rosantsev Georgei M.
Vavilova Svetlana M.
author_sort Ignatуeva Victoria V.
collection DOAJ
description The purpose was to investigate the formation of complex compounds in heteropolytungtoterbiate-ion solutions and to consider thermodynamic probability of these reactions. Methods and methodology. pH-potentiometry at 25±0.1 °C was used to study interactions within TbW10O36 9––H+(OH–)–H2O system. A model describing equilibrium processes in acidic and alkaline areas was selected by using computer program Clinp 2.1. Pitzer equations were used to calculate of the thermodynamic constants of processes in solutions. Results. A model that describes the formation of heteropolyanions HnTbW10O36 (9–n)– and HmTbW5O18(3–m)–was provided. Diagrams of ion distribution in aqueous solutions were constructed. Heteropolytungtoterbiates hydrolysis and hydrolysis-depolymerization processes were determined in initial solutions and areas of prevailing ion presence in solution were defi ned. Logarithms of the concentration and thermodynamic constants, Gibbs energy values for processes with monomer ions and standard Gibbs energy values (ΔG°f) of heteropolyanions formation were calculated. A series/parallel scheme of ion changes was provided. According to which in the beginning an anion W6O20(OH)2 6– is formed, which has an octahedral tungsten-oxygen surrounding that is similar to lacunar ligands in the anion TbW10O36 9–. Nevertheless, the W6O20(OH)2 6– ion does not accumulate in the solution and is not fi xed in the distribution diagram. It can probably be explained by its instantaneous consumption to the aprotonic pentatungtoterbiate, which then forms H2TbW5O18 –. Anions HmTbW5O18 (3–m)– are initial for the formation of the decatungtoterbiates HnTbW10O36 (9–n)–. The close values of Gibbs energies of the protonation reactions for decatungtoterbiates confi rm the parallel nature of these processes. Conclusions. The formation of heteropolytungtoterbiate anions in solutions was selected by computer modelling based on the results of pH-potentiometry. Thermodynamic characteristics were determined and used for providing a scheme of ion changes, the thermodynamic possibility of processes being assessed by calculating the Gibbs free energy of the ions changes.
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spelling doaj.art-b11934f7cdee4581bc5e20629757b9f32022-12-21T19:09:35ZengVoronezh State UniversityКонденсированные среды и межфазные границы1606-867X1606-867X2017-06-0119220521410.17308/kcmf.2017.19/193THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONSIgnatуeva Victoria V.0Rosantsev Georgei M.1Vavilova Svetlana M.2Cand. Sci. (Chem.), Assistant Professor, M. Gorky Donetsk National Medical UniversityDr. Sci. (Chem.), Professor of General and Analytical Chemistry Department, Vasyl’Stus Donetsk national university, UkraineCand. Sci. (Chem.), Lecture, Voronezh State Medical University named after N.N. BurdenkoThe purpose was to investigate the formation of complex compounds in heteropolytungtoterbiate-ion solutions and to consider thermodynamic probability of these reactions. Methods and methodology. pH-potentiometry at 25±0.1 °C was used to study interactions within TbW10O36 9––H+(OH–)–H2O system. A model describing equilibrium processes in acidic and alkaline areas was selected by using computer program Clinp 2.1. Pitzer equations were used to calculate of the thermodynamic constants of processes in solutions. Results. A model that describes the formation of heteropolyanions HnTbW10O36 (9–n)– and HmTbW5O18(3–m)–was provided. Diagrams of ion distribution in aqueous solutions were constructed. Heteropolytungtoterbiates hydrolysis and hydrolysis-depolymerization processes were determined in initial solutions and areas of prevailing ion presence in solution were defi ned. Logarithms of the concentration and thermodynamic constants, Gibbs energy values for processes with monomer ions and standard Gibbs energy values (ΔG°f) of heteropolyanions formation were calculated. A series/parallel scheme of ion changes was provided. According to which in the beginning an anion W6O20(OH)2 6– is formed, which has an octahedral tungsten-oxygen surrounding that is similar to lacunar ligands in the anion TbW10O36 9–. Nevertheless, the W6O20(OH)2 6– ion does not accumulate in the solution and is not fi xed in the distribution diagram. It can probably be explained by its instantaneous consumption to the aprotonic pentatungtoterbiate, which then forms H2TbW5O18 –. Anions HmTbW5O18 (3–m)– are initial for the formation of the decatungtoterbiates HnTbW10O36 (9–n)–. The close values of Gibbs energies of the protonation reactions for decatungtoterbiates confi rm the parallel nature of these processes. Conclusions. The formation of heteropolytungtoterbiate anions in solutions was selected by computer modelling based on the results of pH-potentiometry. Thermodynamic characteristics were determined and used for providing a scheme of ion changes, the thermodynamic possibility of processes being assessed by calculating the Gibbs free energy of the ions changes.heteropolyanionmodellingconcentration and thermodynamic formation constantsstandard Gibbs energyscheme ion transitions.
spellingShingle Ignatуeva Victoria V.
Rosantsev Georgei M.
Vavilova Svetlana M.
THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
Конденсированные среды и межфазные границы
heteropolyanion
modelling
concentration and thermodynamic formation constants
standard Gibbs energy
scheme ion transitions.
title THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
title_full THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
title_fullStr THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
title_full_unstemmed THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
title_short THERMODYNAMIC POSSIBILITY OF THE COMPLEX FORMATION PROCESSES IN POLYTUNGSTOTERBIATE SOLUTIONS
title_sort thermodynamic possibility of the complex formation processes in polytungstoterbiate solutions
topic heteropolyanion
modelling
concentration and thermodynamic formation constants
standard Gibbs energy
scheme ion transitions.
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AT rosantsevgeorgeim thermodynamicpossibilityofthecomplexformationprocessesinpolytungstoterbiatesolutions
AT vavilovasvetlanam thermodynamicpossibilityofthecomplexformationprocessesinpolytungstoterbiatesolutions