Electrochemical Study and Characterization of an Amperometric Biosensor Based on the Immobilization of Laccase in a Nanostructure of TiO2 Synthesized by the Sol-Gel Method

Электрохимическое исследование и характеристика амперометрического биосенсора на основе иммобилизации лакказы в наноструктуре TiO2, синтезированной методом золь-гель
Mariana Romero-Arcos, Ma. Guadalupe Garnica‐Romo, Héctor Eduardo Martínez‐Flores
2016-07-07

TiO2 sol-gel nanostructureTiO2/Nafion compositecyclic voltammetryelectrochemical impedance spectroscopylaccase amperometric biosensor
Laccase amperometric biosensors were developed to detect the catechol compound. The laccase enzyme (LAC) immobilization was performed on nanostructures of (a) titania (TiO₂); (b) titania/Nafion (TiO₂/NAF) (both immobilized by the sol-gel method) and a third nanostructure, which consisted of a single biosensor composite of Nafion and laccase enzyme denoted as NAF/LAC. The Nafion was deposited on a graphite electrode and used to avoid "cracking" on the matrix. The TiO₂ particle size was an average of 66 nm. FTIR spectroscopy vibration modes of different composites were determined. The electrochemical behavior of the biosensor was studied using electrochemical spectroscopy (EIS) and cyclic voltammetry (CV). The biosensor based on TiO₂/NAF/LAC presented the best electro-chemical properties with regard to sensitivity, stability and detection limit after a period of 22 days.
1
Amperometric laccase biosensors were developed to detect catechol using enzyme immobilization on TiO2, TiO2/Nafion, and Nafion/laccase nanostructures.
2
Electrochemical behavior was characterized by EIS and cyclic voltammetry, enabling comparison of sensor performance.
3
FTIR spectroscopy identified vibration modes for the different biosensor composites, confirming composite formation.
4
The TiO2/Nafion/laccase (TiO2/NAF/LAC) biosensor showed the best sensitivity, stability, and detection limit after 22 days.
5
TiO2 nanoparticles synthesized by the sol-gel method had an average particle size of 66 nm.

Amperometric laccase biosensor based on laccase immobilized in TiO2 (and TiO2/Nafion) nanostructured matrices synthesized by the sol–gel method

Electrochemical characterization and performance (sensitivity, stability, detection limit) for catechol detection, including EIS and cyclic voltammetry analysis of different immobilization matrices (TiO2, TiO2/Nafion, Nafion/LAC)

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2016-07-07
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Mariana Romero-Arcos
Ma. Guadalupe Garnica‐Romo
Héctor Eduardo Martínez‐Flores
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