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Field-Effect Sensors: From pH Sensing to Biosensing

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

silicon nanowire field-effect transistor; device-to-device variation; biosensor; top-down fabrication; surface modification; nano-biosensor; analytical model; oxide degradation; depletion width; pH sensor modelling and simulations; capacitive field-effect sensor; on-chip integrated addressable EISCAP sensors; control gate; multianalyte detection; modelling; equivalent circuit; potentiometry; label-free; cell membranes; tight junctions; cytotoxicity; field-effect sensors; chemical sensors; biosensors; olfactory; taste; biomaterials; light-addressable potentiometric sensor; high spatial resolution; electron-beam-induced current; thin sensor substrate; chemical imaging system; electron-beam addressable potentiometric sensor; chemical sensor; stainless steel; crevice corrosion; pH imaging; PEDOT:PSS; 2D materials; stability; gate electrode; diffusion barrier; LAPS; pH sensor; field-effect device; photocurrent; modulated illumination; lock-in detection; waveform; square wave; duty ratio; charge transport; neural networks; Bayesian inversion; inverse modeling; biosensing; potentiometric biosensor; biologically coupled gate field-effect transistor (Bio-FET); ionic and biomolecular charge; Debye length; measurement solution; pH response; subthreshold slope; semiconductive material; integrated device; planar junctionless FETs; proteomics; peptidomics; peptide-protein interaction; therapeutics; diagnostics

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-5514-0

País de edición

Suiza