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Volumn 19, Issue 23, 2008, Pages
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Biomolecule detection using a silicon nanoribbon: Accumulation mode versus inversion mode
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Author keywords
[No Author keywords available]
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Indexed keywords
BIOMOLECULES;
FEES AND CHARGES;
FINANCE;
MOLECULAR BIOLOGY;
MOLECULES;
NONMETALS;
PHOTOACOUSTIC EFFECT;
PHOTOLITHOGRAPHY;
SILICON;
SPURIOUS SIGNAL NOISE;
STANDARDS;
SURFACE CHARGE;
SURFACES;
TRANSISTORS;
TWO DIMENSIONAL;
(1 1 0) SURFACE;
(100) SILICON;
ACCUMULATION MODES;
BIOMOLECULE DETECTION;
CONDUCTING CHANNELS;
CROSS SECTIONING;
DETECTION SENSITIVITY;
FIELD EFFECT TRANSISTOR (FET);
HOLE INJECTIONS;
INVERSION MODES;
NANORIBBON;
NANORIBBONS;
OPTICAL LITHOGRAPHY;
SCHOTTKY;
SILICON LAYERS;
SILICON THICKNESS;
SILICON-ON INSULATOR MATERIALS;
STREPTAVIDIN (SA);
SUBSTRATE VOLTAGE;
TOP SURFACE;
TWO-DIMENSIONAL SIMULATIONS;
FIELD EFFECT TRANSISTORS;
NANORIBBON;
SILICON;
STREPTAVIDIN;
ARTICLE;
ELECTRIC POTENTIAL;
ELECTRON;
INJECTION;
INSULATOR ELEMENT;
LIQUID;
MOLECULE;
NOISE;
PRIORITY JOURNAL;
QUALITATIVE ANALYSIS;
QUANTITATIVE ANALYSIS;
SEMICONDUCTOR;
SIMULATION;
SURFACE PROPERTY;
THICKNESS;
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EID: 44949218379
PISSN: 09574484
EISSN: 13616528
Source Type: Journal
DOI: 10.1088/0957-4484/19/23/235201 Document Type: Article |
Times cited : (6)
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References (19)
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