期刊论文详细信息
Sensors
A 3D Microfluidic Chip for Electrochemical Detection of Hydrolysed Nucleic Bases by a Modified Glassy Carbon Electrode
Pavel Kopel1  Rene Kizek1  Katerina Tmejova1  David Hynek1  Jana Vlachova1  Jan Zitka1  Vojtech Adam1  Maria Korabik2  Jindrich Kynicky3 
[1] Department of Chemistry and Biochemistry, Faculty of Agronomy, Mendel University in Brno, Zemedelska 1, Brno CZ-613 00, Czech Republic;Faculty of Chemistry, University of Wroclaw, 14 Joliot-Curie, Wroclaw PL-50383, Poland;Karel Englis College, Sujanovo nam. 356/1, Brno CZ-602 00, Czech Republic;
关键词: biosensor;    lab-on-chip;    electrochemistry;    graphene;    modification;    hydrolysis;    trithiocyanuric acid;   
DOI  :  10.3390/s150202438
来源: DOAJ
【 摘 要 】

Modification of carbon materials, especially graphene-based materials, has wide applications in electrochemical detection such as electrochemical lab-on-chip devices. A glassy carbon electrode (GCE) modified with chemically alternated graphene oxide was used as a working electrode (glassy carbon modified by graphene oxide with sulphur containing compounds and Nafion) for detection of nucleobases in hydrolysed samples (HCl pH = 2.9, 100 °C, 1 h, neutralization by NaOH). It was found out that modification, especially with trithiocyanuric acid, increased the sensitivity of detection in comparison with pure GCE. All processes were finally implemented in a microfluidic chip formed with a 3D printer by fused deposition modelling technology. As a material for chip fabrication, acrylonitrile butadiene styrene was chosen because of its mechanical and chemical stability. The chip contained the one chamber for the hydrolysis of the nucleic acid and another for the electrochemical detection by the modified GCE. This chamber was fabricated to allow for replacement of the GCE.

【 授权许可】

Unknown   

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