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Single‐Wall Carbon Nanotubes Covalently Functionalized with Polylysine: Synthesis,Characterization and Analytical Applications for the Development of Electrochemical (Bio)Sensors
Authors:Aurélien Gasnier  José Miguel González‐Domínguez  Alejandro Ansón‐Casaos  Javier Hernández‐Ferrer  María L Pedano  María D Rubianes  María Teresa Martínez  Gustavo Rivas
Institution:1. INFIQC. Departamento de Físicoquimica, Facultad de Ciencias Químicas, Ciudad Universitaria, 5000 Córdoba. Argentina;2. Grupo de Nanoestructuras de Carbono y Nanotecnología, Departamento de Nanotecnología y Procesos Químicos, Instituto de Carboquímica (CSIC), 50018 Zaragoza. Espa?a phone: +54‐351‐4334169/80;3. fax: +54‐351‐4334188.
Abstract:This work reports the synthesis of single‐wall carbon nanotubes (SWCNT) covalently functionalized with polylysine (Plys) and the analytical performance of glassy carbon electrodes (GCE) modified with this material (GCE/SWCNT‐Plys). The resulting electrodes showed an important decrease in the overvoltages for the oxidation of ascorbic acid, uric acid and hydrogen peroxide as well as for the reduction of hydrogen peroxide. The favorable interaction of glucose oxidase (GOx) with SWCNT‐Plys allowed the sensitive and selective glucose biosensing at ?0.100 V without any permselective membrane. The proposed sensor was challenged with different real samples without pretreatment showing an excellent correlation with the reported values.
Keywords:Carbon nanotubes  Single‐wall carbon nanotubes  Glassy carbon electrode  Enzymatic biosensors  Glucose oxidase  Glucose biosensors  Polylysine  Covalent functionalization  Biosensors
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