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Keywords
- frequency mixing magnetic detection (4)
- LAPS (3)
- capacitive field-effect sensor (3)
- field-effect sensor (3)
- magnetic nanoparticles (3)
- tobacco mosaic virus (TMV) (3)
- Bacillus atrophaeus (2)
- Light-addressable potentiometric sensor (2)
- Raman spectroscopy (2)
- biosensors (2)
- gold nanoparticles (2)
- hydrogen peroxide (2)
- light-addressable potentiometric sensor (2)
- microfluidics (2)
- (Bio)degradation (1)
- Alginate beads (1)
- Bacillus atrophaeus spores (1)
- CNOT (1)
- CRISPR/Cas9 (1)
- Calorimetric gas sensor (1)
- Capacitive field-effect (1)
- Capacitive model (1)
- Chemical images (1)
- Chemical imaging sensor (1)
- Chemical sensor (1)
- C–V method (1)
- DNA biosensor (1)
- DPA (dipicolinic acid) (1)
- Dehydrogenase (1)
- Detergent protease (1)
- Diaphorase (1)
- EIS capacitive sensor (1)
- Electrolyte–insulator–semiconductor (1)
- Enzymatic biosensor (1)
- Enzyme coverage (1)
- Enzyme logic gate (1)
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- Field effect (1)
- Field-effect biosensor (1)
- Field-effect sensor (1)
- Hydrogen peroxide (1)
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- Label-free detection (1)
- Layer-by-layer adsorption (1)
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- Penicillin (1)
- Poly(allylamine hydrochloride) (1)
- Poly(d,l-lacticacid) (1)
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- Simultaneous determination (1)
- Sn₃O₄ (1)
- Stenotrophomonas maltophilia (1)
- Sterilisation process (1)
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- Ta₂O₅ gate (1)
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- aminooctanethiol (1)
- annealing (1)
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- biosensor (1)
- calorimetric gas sensor (1)
- calorimetric gas sensor;hydrogen peroxide;wireless sensor system (1)
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- catalytic metal (1)
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- coupled Néel–Brownian relaxation dynamics (1)
- detection of charged macromolecules (1)
- electrical conductivity of liquids (1)
- electrolyte-insulator semiconductor sensor (EIS) (1)
- electrolyte-insulator-semiconductor capacitors (1)
- electronic nose (1)
- endospores (1)
- enzyme cascade (1)
- enzyme kinetics (1)
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- equivalent circuit (1)
- field-effect structure (1)
- filamentous fungi (1)
- frequency mixing (1)
- gas sensor (1)
- gaseous hydrogen peroxide (1)
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- glucose oxidase (GOx) (1)
- heavy metals (1)
- horseradish peroxidase (HRP) (1)
- hydroxylation (1)
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- impedance spectroscopy (1)
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- light-addressing technologies (1)
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- magnetic biosensing (1)
- magnetic relaxation (1)
- magnetic sandwich immunoassay (1)
- magnetic sensing (1)
- magnetic sensors (1)
- magnetic separation (1)
- magnetic tweezers (1)
- magnetophoretic velocity (1)
- metal-oxide-semiconductor structure (1)
- micromagnetic simulation (1)
- multi-sensing platform (1)
- multianalyte detection (1)
- multiparametric immunoassays (1)
- multiplex detection (1)
- nanobelts (1)
- nanoparticle coverage (1)
- on-chip integrated addressable EISCAP sensors (1)
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- optical spore trapping (1)
- optical trapping (1)
- organosilanes (1)
- penicillinase (1)
- plant virus detection (1)
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Electrolyte-insulator-semiconductor (EIS) field-effect sensors belong to a new generation of electronic chips for biochemical sensing, enabling a direct electronic readout. The review gives an overview on recent advances and current trends in the research and development of chemical sensors and biosensors based on the capacitive field-effect EIS structure—the simplest field-effect device, which represents a biochemically sensitive capacitor. Fundamental concepts, physicochemical phenomena underlying the transduction mechanism and application of capacitive EIS sensors for the detection of pH, ion concentrations, and enzymatic reactions, as well as the label-free detection of charged molecules (nucleic acids, proteins, and polyelectrolytes) and nanoparticles, are presented and discussed.