Substituent effects and pH profiles for stability constants of arylboronic acid diol esters.

J Org Chem

Facultad de Química, Universidad Nacional Autónoma de México, 04510 México D.F., Mexico.

Published: May 2013

AI Article Synopsis

  • The stability constants of boronic acid diol esters in aqueous solutions were analyzed, revealing a relationship with the acidity of diols and following Hammett's equation, with varying values (ρ) based on the specific diols used.
  • Overlapping experimental methods, like UV-vis and NMR titrations, showed discrepancies in stability constant measurements, with UV-vis yielding higher values compared to NMR results.
  • A proposed general equation allows for the estimation of stability constants based on the acidity (pKa) of the involved boronic acid and diol, enhancing the understanding of how other factors like sterics and charge impact ester stability.

Article Abstract

Stability constants of boronic acid diol esters in aqueous solution have been determined potentiometrically for a series of meta-, para-substituted phenylboronic acids and diols of variable acidity. The constants β(11-1) for reactions between neutral forms of reactants producing the anionic ester plus proton follow the Hammett equation with ρ depending on pKa of diol and varying from 2.0 for glucose to 1.29 for 4-nitrocatechol. Observed stability constants (K(obs)) measured by UV-vis and fluorometric titrations at variable pH for esters of 4,5-dihydroxy-1,3-benzenedisulfonate (Tiron) generally agree with those expected on the basis of β(11-1) values, but the direct fitting of K(obs) vs pH profiles gives shifted pKa values both for boronic acids and diol as a result of significant interdependence of fitting parameters. The subsituent effects on absorption and fluorescence spectra of Tiron arylboronate esters are characterized. The K(obs) for Tiron determined by (11)B NMR titrations are approximately 1 order of magnitude smaller than those determined by UV-vis titrations under identical conditions. A general equation, which makes possible an estimate of β(11-1) for any pair of boronic acid and diol from their pKa values, is proposed on the basis of established Brönsted-type correlation of Hammett parameters for β(11-1) with acidity of diols. The equation allows one to calculate stability constants expected only on basis of acid-base properties of the components, thus permitting more strict evaluation of contributions of additional factors such as steric or charge effects to the ester stability.

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http://dx.doi.org/10.1021/jo400617jDOI Listing

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