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A new approach to light up the application of semiconductor nanomaterials for photoelectrochemical biosensors: using self-operating photocathode as a highly selective enzyme sensor
- Source :
- Biosensorsbioelectronics. 62
- Publication Year :
- 2014
-
Abstract
- Due to the intrinsic hole oxidation reaction occurred on the photoanode surface, currently developed photoelectrochemical biosensors suffer from the interference from coexisting reductive species (acting as electron donor) and a novel design strategy of photoelectrode for photoelectrochemical detection is urgently required. In this paper, a self-operating photocathode based on CdS quantum dots sensitized three-dimensional (3D) nanoporous NiO was designed and created, which showed highly selective and reversible response to dissolved oxygen (acting as electron acceptor) in the electrolyte solution. Using glucose oxidase (GOD) as a biocatalyst, a novel photoelectrochemical sensor for glucose was developed. The commonly encountered interferents such as H2O2, ascorbic acid (AA), cysteine (Cys), dopamine (DA), etc., almost had no effect for the cathodic photocurrent of the 3D NiO/CdS electrode, though these substances were proved to greatly influence the photocurrent of photoanodes, which indicated greatly improved selectivity of the method. The method was applied to detect glucose in real samples including serum and glucose injections with satisfactory results. This study could provide a new train of thought on designing of self-operating photocathode in photoelectrochemical sensing, promoting the application of semiconductor nanomaterials in photoelectrochemistry.
- Subjects :
- Blood Glucose
Materials science
Photoelectrochemistry
Biomedical Engineering
Biophysics
Nanotechnology
Biosensing Techniques
Photocathode
Nanomaterials
Glucose Oxidase
Nickel
Quantum Dots
Electrochemistry
Cadmium Compounds
Humans
Glucose oxidase
Selenium Compounds
Electrodes
Photocurrent
biology
Nanoporous
General Medicine
Electrochemical Techniques
Equipment Design
Ascorbic acid
Enzymes, Immobilized
Semiconductors
biology.protein
Biosensor
Porosity
Biotechnology
Subjects
Details
- ISSN :
- 18734235
- Volume :
- 62
- Database :
- OpenAIRE
- Journal :
- Biosensorsbioelectronics
- Accession number :
- edsair.doi.dedup.....6456b5ed340b6fb6b024b77326dce4ac