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Guest-Host Complex Formed between Ascorbic Acid and β-Cyclodextrin Immobilized on the Surface of an Electrode

机译:固定在电极表面的抗坏血酸和β-环糊精之间形成客体-主体配合物

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摘要

This work deals with the formation of supramolecular complexes between ascorbic acid (AA), the guest, and β-cyclodextrin (β-CD), the host, that was first potentiodynamically immobilized on the surface of a carbon paste electrode (CPE) throughout the formation of a β-CD-based conducting polymer (poly-β-CD). With the bare CPE and the β-CD-modified CPE, an electrochemical study was performed to understand the effect of such surface modification on the electrochemical response of the AA. From this study it was shown that on the modified-CPE, the AA was surface-immobilized through formation of an inclusion complex with β-CD, which provoked the adsorption of AA in such a way that this stage became the limiting step for the electrochemical oxidation of AA. Moreover, from the analysis of the experimental voltammetric plots recorded during AA oxidation on the CPE/poly-β-CD electrode surfaces, the Gibbs’ standard free energy of the inclusion complex formed by the oxidation product of AA and β-CD has been determined for the first time, ∆G0inclus = −36.4 kJ/mol.
机译:这项工作涉及抗坏血酸(AA)和客体β-环糊精(β-CD)之间的超分子复合物的形成,该复合物首先被电位动力学地固定在整个碳糊电极(CPE)的表面上。形成基于β-CD的导电聚合物(聚-β-CD)。对于裸露的CPE和β-CD改性的CPE,进行了电化学研究,以了解这种表面改性对AA电化学反应的影响。从这项研究中可以看出,在改性的CPE上,AA通过与β-CD形成包合配合物而被表面固定,从而促使AA的吸附,使得该阶段成为电化学的限制步骤。 AA的氧化。此外,通过分析在CPE /聚-β-CD电极表面上进行AA氧化过程中记录的实验伏安图,可以确定由AA和β-CD的氧化产物形成的包合物的吉布斯标准自由能。 ΔG 0 首次包括-36.4 kJ / mol。

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