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Solvatochromism of 2‐(N,N‐dimethylamino)‐7‐nitrofluorene and the natural dye β‐carotene: application for the determination of solvent dipolarity and polarizability
Authors:Paulo A. R. Pires  Muhammad Imran  Carina Loffredo  Paulo M. Donate  Daniel Previdi  Omar A. El Seoud
Affiliation:1. Institute of Chemistry, University of S?o Paulo, , 05513‐970 S?o Paulo, SP, Brazil;2. Department of Chemistry, FFCL, University of S?o Paulo, , 14040‐901 Ribeir?o Preto, SP, Brazil;3. 55‐11‐3091‐3874
Abstract:The effects of solvents on chemical phenomena (rate and equilibrium constants, spectroscopic transitions, etc.) are conveniently described by solvation free‐energy relationships that take into account solvent acidity, basicity and dipolarity/polarizability. The latter can be separated into its components by manipulating the UV–vis spectra of two solvatochromic probes, 2‐(N,N‐dimethylamino)‐7‐nitrofluorene (DMANF) and a di‐(tert‐butyl)‐tetramethyl docosanonaen probe (ttbP9) whose synthesis is laborious and expensive. Recently, we have shown that the natural dye β‐carotene can be conveniently employed instead of ttbP9 for the determination of solvent polarizability (SP) of 76 molecular solvents and four ionic liquids. In the present work, we report the polarizabilities of further 24 solvents. Based on the solvatochromism of β‐carotene and DMANF, we have calculated solvent dipolarity (SD) for 103 protic and aprotic molecular solvents, and ionic liquids. The dependence of SD and SP on the number of carbon atoms in the acyl‐ or alkyl group of several homologous series (alcohols; 2‐alkoxyethanols; carboxylic acid‐ anhydrides, and esters, ionic liquids) is calculated and briefly discussed. Copyright © 2013 John Wiley & Sons, Ltd.
Keywords:solvatochromism  solvent dipolarity  solvent polarizability  2‐(N,N‐dimethylamino‐7‐nitrofluorene  β  ‐carotene  ionic liquids  2‐alkoxyethanols  carboxylic acid esters  acid anhydrides
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