Chlorine

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

Na+,2Cl−,K+ cotransport system as a marker of antihypertensive activity of new torasemide derivatives

Hypertension / Blood Pressure / Diuretics / Animals / Male / Potassium / Rats / Sodium / Chlorine / Structure activity Relationship / Erythrocytes / Potassium / Rats / Sodium / Chlorine / Structure activity Relationship / Erythrocytes
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