Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 41 checked references that resolve
resolves10.1016/j.bios.2019.03.003Specific and label-free immunosensing of protein-protein interactions with silicon-based immunoFETs
resolves10.1016/j.bios.2017.12.041Low-picomolar, label-free procalcitonin analytical detection with an electrolyte-gated organic field-effect transistor based electronic immunosensor
resolves10.1021/ac401085cAttomolar Detection of Influenza A Virus Hemagglutinin Human H1 and Avian H5 Using Glycan-Blotted Field Effect Transistor Biosensor
resolves10.1038/am.2012.75Specific and label-free femtomolar biomarker detection with an electrostatically formed nanowire biosensor
resolves10.1016/j.bios.2011.11.038The interplay between pH sensitivity and label-free protein detection in immunologically modified nano-scaled field-effect transistor
resolves10.1021/cr068120yISFET and Fiber Optic Sensor Technologies: In Vivo Experience for Critical Care Monitoring
resolves10.1109/TED.2012.2214221Optimization of the Sensitivity of FET-Based Biosensors via Biasing and Surface Charge Engineering
resolves10.1063/1.2779965Ultrasensitive, label-free, and real-time immunodetection using silicon field-effect transistors
resolves10.1021/nl9034219Subthreshold Regime has the Optimal Sensitivity for Nanowire FET Biosensors
resolves10.1126/science.aao6750Aptamer–field-effect transistors overcome Debye length limitations for small-molecule sensing
resolves10.1021/nl071792zImportance of the Debye Screening Length on Nanowire Field Effect Transistor Sensors
resolves10.1039/b204444gRecent advances in biologically sensitive field-effect transistors (BioFETs)
resolves10.1038/s41598-017-05426-6Beyond the Debye length in high ionic strength solution: direct protein detection with field-effect transistors (FETs) in human serum
resolves10.1021/am5032693Aptamer-Functionalized Hybrid Carbon Nanofiber FET-Type Electrode for a Highly Sensitive and Selective Platelet-Derived Growth Factor Biosensor
resolves10.1021/acs.nanolett.5b00133General Strategy for Biodetection in High Ionic Strength Solutions Using Transistor-Based Nanoelectronic Sensors
resolves10.1021/acssensors.8b01515Analytical Model To Describe the Effect of Polyethylene Glycol on Ionic Screening of Analyte Charges in Transistor-Based Immunosensing
resolves10.1002/adma.201403541Detection Beyond Debye's Length with an Electrolyte‐Gated Organic Field‐Effect Transistor
resolves10.1039/f19747001807Site-binding model of the electrical double layer at the oxide/water interface
resolves10.1016/0925-4005(95)85043-0A novel description of ISFET sensitivity with the buffer capacity and double-layer capacitance as key parameters
resolves10.1021/acs.langmuir.5b02389Emergence of a Stern Layer from the Incorporation of Hydration Interactions into the Gouy–Chapman Model of the Electrical Double Layer
resolves10.1021/acs.langmuir.8b02064Electrical Double Layers: Effects of Asymmetry in Electrolyte Valence on Steric Effects, Dielectric Decrement, and Ion–Ion Correlations
resolves10.1016/j.cis.2009.10.001Towards an understanding of induced-charge electrokinetics at large applied voltages in concentrated solutions
resolves10.1088/0957-4484/23/6/065202Simulation study on discrete charge effects of SiNW biosensors according to bound target position using a 3D TCAD simulator
resolves10.1021/jp980642xSolvent Structure, Dynamics, and Ion Mobility in Aqueous Solutions at 25 °C
The 5 references without a DOI — listed, not checked
no DOI — not checkedIntermolecular and Surface Forces
no DOI — not checkedBergveld, P. ISFET, Theory and Practice. In IEEE Sensor Conference Toronto, 2003; pp 1–26.
no DOI — not checkedElectrochemical Methods: Fundamentals and Applications
no DOI — not checkedTheory of the Stability of Lyophobic Colloids
no DOI — not checkedColloid Science
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