2004
DOI: 10.1002/ejoc.200400170
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pH Effects on Ethanolysis of Some Arenediazonium Ions: Evidence for Homolytic Dediazoniation Proceeding through Formation of Transient Diazo Ethers

Abstract: The effects of pH on the observed rate constants (k obsd. ) and on the solvolytic dediazoniation product distributions of ethanolysis of 2-, 3-, and 4-methylbenzenediazonium ions (2MBD, 3MBD, and 4MBD, respectively) were determined by a combination of spectrophotometric (UV/Vis) and chromatographic (HPLC) techniques. The variation of both k obsd. and product yields with pH follow S-shaped curves with inflection points at pH ഠ 3.6, depending on solvent composition. With increasing pH, k obsd. values increase by… Show more

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Cited by 56 publications
(80 citation statements)
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“…The finding of S-shaped kinetic profiles is in keeping with previous findings showing parallel variations of k obs or t 1/2 with the acidity in the course of solvolytic dediazoniations [4] [5] [12] and attributed to the formation of transient diazo ether intermediates from the arenediazonium ions which then lead on to the reduction product ArH (Scheme).…”
supporting
confidence: 86%
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“…The finding of S-shaped kinetic profiles is in keeping with previous findings showing parallel variations of k obs or t 1/2 with the acidity in the course of solvolytic dediazoniations [4] [5] [12] and attributed to the formation of transient diazo ether intermediates from the arenediazonium ions which then lead on to the reduction product ArH (Scheme).…”
supporting
confidence: 86%
“…1), reaching a k obs % 16 · 10 À4 s À1 at 99% EtOH. HPLC Analyses of the product mixtures indicate (results not shown) that only the substitution products ArOH and ArOEt are formed in substantial amounts, in keeping with previous findings [12].…”
supporting
confidence: 85%
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“…Similar situations where found when reacting ArN þ 2 ions with neutral nucleophiles such as MeOH [15] and EtOH [14] and in systems of restricted geometry [13]. We are also interested in determining the distribution of polar organic molecules such as antioxidants in emulsified systems by using arenediazonium ions as chemical probes that react with a given antioxidant, the kinetic results being interpreted in terms of a pseudophase model [24] [25].…”
mentioning
confidence: 92%
“…In addition, we recently investigated the reaction with methyl gallate, concluding that this reaction takes place through the formation of an unstable Ocoupling adduct that further decomposes (Scheme 1, b) [36]. Similar O-coupling mechanisms have been proposed before for the reaction between a number of ArN þ 2 ions with neutral nucleophiles such as MeOH [7] and EtOH [37], cationic nucleophiles such as ascorbate ions [4] [6] [38] [39], and with polyalcohols in systems of restricted geometry [5]. The results of the present study should contribute to bridging the gap between the chemical and biological antioxidant activity by exploring the effects of the micro-environment in which the antioxidant is located, as studied by means of membrane-mimetic systems.…”
Section: Introduction -Reactions Of Natural Reducing Agents With Arementioning
confidence: 85%