2008ECS TransactionsRequires access

Application of MWCNT to Study Azometine-H by Cyclic Voltammetry

Georgina Alarcón-Ángeles, Maria T. Ramírez-Silva, Silvia Corona‐Avendaño, M. Romero‐Romo, Manuel Palomar‐Pardavé, Alberto Rojas-Hernándéz

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Abstract

This work deals with the electrochemical study of Azometine-H by mean of cyclic voltammetry using a carbon paste electrode modified with multi-wall carbon nanotubes, MWCNT, and b-Cyclodextrin. The results obtained evidence that it possible to follow the electrochemical evolution of the azometin-H at pH 7.0 and that the use of an electrode modified with carbon nanotubes improved the electrochemical response, favoring the electron transfer and increasing the oxidation peak's current, as compared with a conventional carbon paste electrode. Further, it was found that the azometine-H displayed an adsorption process associated to the interaction between the compound under study and the b-ciclodextrin.

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What this paper is about

This work deals with the electrochemical study of Azometine-H by mean of cyclic voltammetry using a carbon paste electrode modified with multi-wall carbon nanotubes, MWCNT, and b-Cyclodextrin. The results obtained evidence that it possible to follow the electrochemical evolution of the azometin-H at pH 7.0 and that the use of an electrode modified with carbon nanotubes improved the electrochemical response, favoring the electron transfer and increasing the oxidation peak's current, as compared with a conventional carbon paste electrode. Further, it was found that the azometine-H displayed an adsorption process associated to the interaction between the compound under study and the b-ciclodextrin.

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Available abstract

This work deals with the electrochemical study of Azometine-H by mean of cyclic voltammetry using a carbon paste electrode modified with multi-wall carbon nanotubes, MWCNT, and b-Cyclodextrin. The results obtained evidence that it possible to follow the electrochemical evolution of the azometin-H at pH 7.0 and that the use of an electrode modified with carbon nanotubes improved the electrochemical response, favoring the electron transfer and increasing the oxidation peak's current, as compared with a conventional carbon paste electrode. Further, it was found that the azometine-H displayed an adsorption process associated to the interaction between the compound under study and the b-ciclodextrin.

Key concepts: Cyclic voltammetry, Electrochemistry, Electrode, Carbon nanotube, Materials science, Adsorption, Electron transfer, Carbon paste electrode

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