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      Calculated Third Order Rate Constants for Interpreting the Mechanisms of Hydrolyses of Chloroformates, Carboxylic Acid Halides, Sulfonyl Chlorides and Phosphorochloridates

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          Abstract

          Hydrolyses of acid derivatives (e.g., carboxylic acid chlorides and fluorides, fluoro- and chloroformates, sulfonyl chlorides, phosphorochloridates, anhydrides) exhibit pseudo-first order kinetics. Reaction mechanisms vary from those involving a cationic intermediate (S N1) to concerted S N2 processes, and further to third order reactions, in which one solvent molecule acts as the attacking nucleophile and a second molecule acts as a general base catalyst. A unified framework is discussed, in which there are two reaction channels—an S N1-S N2 spectrum and an S N2-S N3 spectrum. Third order rate constants ( k 3) are calculated for solvolytic reactions in a wide range of compositions of acetone-water mixtures, and are shown to be either approximately constant or correlated with the Grunwald-Winstein Y parameter. These data and kinetic solvent isotope effects, provide the experimental evidence for the S N2-S N3 spectrum (e.g., for chloro- and fluoroformates, chloroacetyl chloride, p-nitrobenzoyl p-toluenesulfonate, sulfonyl chlorides). Deviations from linearity lead to U- or V-shaped plots, which assist in the identification of the point at which the reaction channel changes from S N2-S N3 to S N1-S N2 (e.g., for benzoyl chloride).

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          The Correlation of Solvolysis Rates

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            Solvolytic Displacement Reactions At Saturated Carbon Atoms

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              Development and uses of scales of solvent nucleophilicity

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Int J Mol Sci
                Int J Mol Sci
                ijms
                International Journal of Molecular Sciences
                MDPI
                1422-0067
                08 May 2015
                May 2015
                : 16
                : 5
                : 10601-10623
                Affiliations
                Chemistry Unit, Grove Building, School of Medicine, Swansea University, Swansea SA2 8PP, Wales, UK; E-Mail: t.w.bentley@ 123456swansea.ac.uk ; Tel.: +44-1792-295-262; Fax: +44-1792-295-554
                Article
                ijms-16-10601
                10.3390/ijms160510601
                4463664
                26006228
                4fa37c9d-c984-41a9-a892-4a9fd68f2085
                © 2015 by the authors; licensee MDPI, Basel, Switzerland.

                This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 07 April 2015
                : 30 April 2015
                Categories
                Article

                Molecular biology
                solvolysis,substituent effects,solvent effects,acid chlorides,reaction mechanisms

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