2004•The Journal of Physical Chemistry BRequires access

Characterization of Lactam-Containing Binary Solvents by Solvatochromic Indicators

Begoña Garcı́a, Santiago Aparício, Rafael Alcalde, Rebeca Ruiz, María J. Dávila, José Maria Leal

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Abstract

Preferential solvation and intermolecular interactions of the solvatochromic indicators 4-nitroanisole, 4-nitroaniline, 4-nitrophenol, and Reichardt's dye is studied at 298.15 K in the binary solvents 2-pyrrolidinone/water, N -methylpyrrolidinone/water, and 2-pyrrolidinone/ N -methylpyrrolidinone. From the experimental data the Reichardt's and Kamlet−Taft parameters were evaluated for the mixed solvents. A preferential solvation model was applied to analyze the solvation effect of the indicator by the different solvents used, and from these data useful information about solute−solvent and solvent−solvent interactions was deduced. Comparison with other thermophysical data reveals a relationship between the solvatochromic parameters and the partial molar volumes, mainly in water-containing solvents.

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What this paper is about

Preferential solvation and intermolecular interactions of the solvatochromic indicators 4-nitroanisole, 4-nitroaniline, 4-nitrophenol, and Reichardt's dye is studied at 298.15 K in the binary solvents 2-pyrrolidinone/water, N -methylpyrrolidinone/water, and 2-pyrrolidinone/ N -methylpyrrolidinone. From the experimental data the Reichardt's and Kamlet−Taft parameters were evaluated for the mixed solvents. A preferential solvation model was applied to analyze the solvation effect of the indicator by the different solvents used, and from these data useful information about solute−solvent and solvent−solvent interactions was deduced. Comparison with other thermophysical data reveals a relationship between the solvatochromic parameters and the partial molar volumes, mainly in water-containing solvents.

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Available abstract

Preferential solvation and intermolecular interactions of the solvatochromic indicators 4-nitroanisole, 4-nitroaniline, 4-nitrophenol, and Reichardt's dye is studied at 298.15 K in the binary solvents 2-pyrrolidinone/water, N -methylpyrrolidinone/water, and 2-pyrrolidinone/ N -methylpyrrolidinone. From the experimental data the Reichardt's and Kamlet−Taft parameters were evaluated for the mixed solvents. A preferential solvation model was applied to analyze the solvation effect of the indicator by the different solvents used, and from these data useful information about solute−solvent and solvent−solvent interactions was deduced. Comparison with other thermophysical data reveals a relationship between the solvatochromic parameters and the partial molar volumes, mainly in water-containing solvents.

Key concepts: Solvatochromism, Solvation, Chemistry, Solvent, Intermolecular force, Solvent effects, Physical chemistry, Computational chemistry

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