2018
DOI: 10.1149/2.0581811jes
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Thermodynamic and Mechanistic Study of the Electrochemical Oxidation of Rosmarinic Acid

Abstract: Electrochemical oxidation of rosmarinic acid (RA) in aqueous solutions has been studied using cyclic voltammetry, linear sweep voltammetry and differential pulse voltammetry. RA (1) has two catechol rings, and the electrochemical study of it shows two oxidation-reduction peaks (E r E r mechanism). In the first step oxidation RA (1) converted to OX 1-1 , and in the second step of oxidation the produced OX 1-1 oxidized to OX 2 . Two possible structures were designed for the first step of oxidation and optimized … Show more

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Cited by 8 publications
(13 citation statements)
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“…p K a values were calculated to be 3.07 (p K a1 ) (vs experimental value of 3.16, validating the method) and 8.28 (p K a2 ). Thus, in the aqueous solution at pH = 7.4, RA exists in two states: monoanion (HA – , 88.6%) and dianion (A 2– , 11.4%).…”
Section: Resultsmentioning
confidence: 55%
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“…p K a values were calculated to be 3.07 (p K a1 ) (vs experimental value of 3.16, validating the method) and 8.28 (p K a2 ). Thus, in the aqueous solution at pH = 7.4, RA exists in two states: monoanion (HA – , 88.6%) and dianion (A 2– , 11.4%).…”
Section: Resultsmentioning
confidence: 55%
“…Calculated ΔG ≠ (kcal/mol), κ, k Eck (M −1 s −1 ), and Γ (%) for the HO values were computed following the literature, 46,47 and the results are shown in Figure 3. pK a values were calculated to be 3.07 (pK a1 ) (vs experimental value of 3.16, validating the method) 15 and 8.28 (pK a2 ). Thus, in the aqueous solution at pH = 7.4, RA exists in two states: monoanion (HA − , 88.6%) and dianion (A 2− , 11.4%).…”
Section: Kinetic Studymentioning
confidence: 55%
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