Biosensor

Development of a novel FRET immunosensor technique

Analytical Chemistry / Biomedical Engineering / Fluorescence / Nanotechnology / Fluorescence Resonance Energy Transfer / Biosensor / Technique / FRET / Resonant Energy Transfer / Protein Complex Detection / Antibody / Reproducibility of Results / Energy Transfer / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / P/BV Ratio / Conformational Change / Antigens / Biosensing Techniques / immunoglobulin G / Biosensor / Technique / FRET / Resonant Energy Transfer / Protein Complex Detection / Antibody / Reproducibility of Results / Energy Transfer / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / P/BV Ratio / Conformational Change / Antigens / Biosensing Techniques / immunoglobulin G

Catechol biosensing using a nanostructured layer-by-layer film containing Cl-catechol 1,2-dioxygenase

Analytical Chemistry / Biomedical Engineering / Biosensors / Electrochemistry / Crystallization / Nanotechnology / Impedance Spectroscopy / Adsorption / Circular Dichroism / Biosensor / Nanostructures / Surface plasmon resonance / Nanostructure / Enzyme / Layer by Layer / Surface Properties / Catechols / Industrial wastewater / Chlorine / BioSensors / Electrodes / Ionic Strength / Aqueous Solution / Protein Binding / Equipment Design / Equipment Failure Analysis / Enzyme immobilization / Biosensing Techniques / Nanotechnology / Impedance Spectroscopy / Adsorption / Circular Dichroism / Biosensor / Nanostructures / Surface plasmon resonance / Nanostructure / Enzyme / Layer by Layer / Surface Properties / Catechols / Industrial wastewater / Chlorine / BioSensors / Electrodes / Ionic Strength / Aqueous Solution / Protein Binding / Equipment Design / Equipment Failure Analysis / Enzyme immobilization / Biosensing Techniques

Catechol biosensing using a nanostructured layer-by-layer film containing Cl-catechol 1,2-dioxygenase

Analytical Chemistry / Biomedical Engineering / Biosensors / Electrochemistry / Crystallization / Nanotechnology / Impedance Spectroscopy / Adsorption / Circular Dichroism / Biosensor / Nanostructures / Surface plasmon resonance / Nanostructure / Enzyme / Layer by Layer / Surface Properties / Catechols / Industrial wastewater / Chlorine / BioSensors / Electrodes / Ionic Strength / Aqueous Solution / Protein Binding / Equipment Design / Equipment Failure Analysis / Enzyme immobilization / Biosensing Techniques / Nanotechnology / Impedance Spectroscopy / Adsorption / Circular Dichroism / Biosensor / Nanostructures / Surface plasmon resonance / Nanostructure / Enzyme / Layer by Layer / Surface Properties / Catechols / Industrial wastewater / Chlorine / BioSensors / Electrodes / Ionic Strength / Aqueous Solution / Protein Binding / Equipment Design / Equipment Failure Analysis / Enzyme immobilization / Biosensing Techniques

Integrated micro- and nano-optical biosensor silicon devices CMOS compatible

Microfluidics / Nanoelectronics / Lab On A Chip / Integrated Optics / Interferometry / Biosensor / Optical Waveguide / EVANESCENT WAVE / Waveguide / Photodetector / Mach-zehnder Interferometer / Mach Zehnder / High Sensitivity / Biosensor / Optical Waveguide / EVANESCENT WAVE / Waveguide / Photodetector / Mach-zehnder Interferometer / Mach Zehnder / High Sensitivity

A PMMA microcapillary quantum dot linked immunosorbent assay (QLISA)

Analytical Chemistry / Biomedical Engineering / Fluid Mechanics / Microfluidics / Biosensors / Nanotechnology / Quantum Dots / Peroxidase / Animals / Data acquisition / Biosensor / Low Power / High Power / Quantum Dot / Feces / Miniaturization / Reproducibility of Results / BioSensors / Sensitivity and Specificity / Ionic Strength / Equipment Design / Equipment Failure Analysis / Enzyme Linked Immunosorbent Assay / Polymethyl Methacrylate (PMMA) / Myeloperoxidase / Biosensing Techniques / Microfluidic / Nanotechnology / Quantum Dots / Peroxidase / Animals / Data acquisition / Biosensor / Low Power / High Power / Quantum Dot / Feces / Miniaturization / Reproducibility of Results / BioSensors / Sensitivity and Specificity / Ionic Strength / Equipment Design / Equipment Failure Analysis / Enzyme Linked Immunosorbent Assay / Polymethyl Methacrylate (PMMA) / Myeloperoxidase / Biosensing Techniques / Microfluidic

Iron oxide nanoparticles–chitosan composite based glucose biosensor

Analytical Chemistry / Biomedical Engineering / Biosensors / Electrochemistry / Nanoparticle / Chitosan / Scanning Electron Microscopy / Nanoparticles / Transmission Electron Microscopy / Nanotechnology / SHELF LIFE / Glucose / Nanocomposite / Biosensor / Iron Oxide / Microelectrodes / X ray diffraction / Reproducibility of Results / BioSensors / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / Ferric Compounds / Indium tin oxide / Biosensing Techniques / Glucose Oxidase / Fourier transform infrared / Chitosan / Scanning Electron Microscopy / Nanoparticles / Transmission Electron Microscopy / Nanotechnology / SHELF LIFE / Glucose / Nanocomposite / Biosensor / Iron Oxide / Microelectrodes / X ray diffraction / Reproducibility of Results / BioSensors / Sensitivity and Specificity / Equipment Design / Equipment Failure Analysis / Ferric Compounds / Indium tin oxide / Biosensing Techniques / Glucose Oxidase / Fourier transform infrared

Carbon nanotubes — chitosan nanobiocomposite for immunosensor

Engineering / Technology / Glass / Carbon Nanotubes / Carbon Nanotube / Thin Films / Biosensor / Physical sciences / Electron Transport / Surface Area / Surface Charge / Thin Solid Films / Bovine Serum Albumin / Indium tin oxide / Immunoglobulin / Ochratoxin A / Serum albumin / Thin Films / Biosensor / Physical sciences / Electron Transport / Surface Area / Surface Charge / Thin Solid Films / Bovine Serum Albumin / Indium tin oxide / Immunoglobulin / Ochratoxin A / Serum albumin
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