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    Free radicals produced by the oxidation of gallic acid: An electron paramagnetic resonance study

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    <p>Abstract</p> <p>Background</p> <p>Gallic acid (3,4,5-trihydroxybenzoic acid) is found in a wide variety of plants; it is extensively used in tanning, ink dyes, as well as in the manufacturing of paper. The gallate moiety is a key component of many functional phytochemicals. In this work electron paramagnetic spectroscopy (EPR) was used to detect the free radicals generated by the air-oxidation of gallic acid.</p> <p>Results</p> <p>We found that gallic acid produces two different radicals as a function of pH. In the pH range between 7-10, the spectrum of the gallate free radical is a doublet of triplets (a<sup>H </sup>= 1.00 G, a<sup>H </sup>= 0.23 G, a<sup>H </sup>= 0.28 G). This is consistent with three hydrogens providing hyperfine splitting. However, in a more alkaline environment, pH >10, the hyperfine splitting pattern transforms into a 1:2:1 pattern (a<sup>H </sup>(2) = 1.07 G). Using D<sub>2</sub>O as a solvent, we demonstrate that the third hydrogen (<it>i.e</it>. a<sup>H </sup>= 0.28 G) at lower pH is a slowly exchanging hydron, participating in hydrogen bonding with two oxygens in <it>ortho </it>position on the gallate ring. The p<it>K</it><sub>a </sub>of this proton has been determined to be 10.</p> <p>Conclusions</p> <p>This simple and novel approach permitted the understanding of the prototropic equilibrium of the semiquinone radicals generated by gallic acid, a ubiquitous compound, allowing new insights into its oxidation and subsequent reactions.</p
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