EFFECT OF SOLVENT ON THE REACTION OF COORDINATION-COMPLEXES .19. BASE HYDROLYSIS OF (ALPHA-BETA-S)-(O-METHOXY BENZOATO)(TETRAETHYLENEPENTAMINE)-COBALT(III) IN AQUO-ORGANIC SOLVENT MEDIA

Acharya, AN; Dash, AC

HERO ID

1198848

Reference Type

Journal Article

Year

1994

HERO ID 1198848
In Press No
Year 1994
Title EFFECT OF SOLVENT ON THE REACTION OF COORDINATION-COMPLEXES .19. BASE HYDROLYSIS OF (ALPHA-BETA-S)-(O-METHOXY BENZOATO)(TETRAETHYLENEPENTAMINE)-COBALT(III) IN AQUO-ORGANIC SOLVENT MEDIA
Authors Acharya, AN; Dash, AC
Journal Journal of the Chemical Society. Faraday Transactions
Volume 90
Issue 21
Page Numbers 3293-3299
Abstract The kinetics of base hydrolysis of (alphabetaS)-(o-methoxy benzoato)(tetren)cobalt(III) have been investigated in aquo-organic solvent media [0-70% (v/v) cosolvents] at 10 less-than-or-equal-to t/degree-C less-than-or-equal-to 40 (l = 0.01 mol dm-3) using methanol, ethanol, propan-1-ol, propan-2-ol, butan-1-ol, tert-butyl alcohol, ethylene glycol, 2-methoxyethanol, acetone, acetonitrile, 1,4-dioxane and dimethyl sulfoxide as cosolvents. The second-order base hydrolysis rate constant increased non-linearly with increasing mole fraction (X(org)) of all cosolvents, except for the ethylene glycol-water system; ethylene glycol had a rate-retarding effect. The transfer Gibbs energy of the transition state (TS) relative to that of the initial state (IS), for transfer of species from water to mixed solvent varied non-linearly with D(s)-1 and X(org), reflecting the individuality of the cosolvents and thereby suggesting that the relative stabilities of the transition state and the initial state were governed by the preferential solvation effect. The solvent stabilisation of the initial state and the transition state has been assessed for the methanol-water and ethanol-water systems by combining the solubility data of the dithionate salt of the complex with the transfer Gibbs energy data for S2O6(2-). The thermodynamic parameters (DELTAH(dagger) and DELTAS(dagger)) were sensitive to the structural changes in the bulk solvent phase.
Doi 10.1039/ft9949003293
Wosid WOS:A1994PP54500014
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science A1994PP54500014
Is Public Yes
Is Qa No