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Beilstein J. Nanotechnol. 2024, 15, 977–994, doi:10.3762/bjnano.15.80
Figure 1: Schematic showing main sectors of biosensor applications.
Figure 2: Schematic showing the organization of FET-based biosensors.
Figure 3: Schematic showing the general structure of DM FET-based biosensors with two nanogaps.
Figure 4: Adequate diameter for detecting different molecule types.
Figure 5: Schematic showing the cross-sectional representation of a HG NT JL FET-based biosensor.
Figure 6: Schematic showing the cross-section (2D) of a VS NS FET-based biosensor.
Figure 7: Schematic showing the structure of the 3D SRG JL FET-based biosensor.
Figure 8: Schematic showing the cutting-plane view of a FinFET-based biosensor.
Figure 9: Schematic showing the cross-section of an NW TFET-based biosensor with an additional electrode (ASE...
Figure 10: Schematic showing the view of an SE SB FET-based biosensor.
Figure 11: Schematic showing the structure of TMD FET-based biosensors without a gate above the nanocavity (a)...
Figure 12: Schematic showing the structure of an SPG JL FET-based biosensor.
Figure 13: Schematic showing the structure of a DC DG JL MOSFET-based biosensor.
Figure 14: Schematic showing the structure of a UII MOS-based biosensor.
Figure 15: Schematic showing the structure of a BE TC OTFT-based biosensor.
Figure 16: Schematic showing the structure of a PKD TFET-based biosensor.
Figure 17: Schematic showing the structure of a GE H TFET-based biosensor.
Figure 18: Schematic showing the structure of an NC DG TFET-based biosensor.
Figure 19: Schematic showing the structure of a CG HJ TFET-based biosensor.
Figure 20: Schematic showing the structure of an ST SII FET-based biosensor.
Figure 21: Review on emerging three-dimensional and two-dimensional FET-based biosensors.