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Volumn 25, Issue 12, 2010, Pages 2706-2710
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Label-free detection of DNA using novel organic-based electrolyte-insulator-semiconductor
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Author keywords
DNA biosensor; Electrolyte insulator semiconductor; Organic semiconductor; PH sensor
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Indexed keywords
BIOSENSING;
CHARGED MOLECULE;
DETECTION LIMITS;
DNA BIOSENSORS;
DNA CONCENTRATION;
DNA HYBRIDIZATION;
DNA SENSING;
ELECTROLYTE SURFACES;
ELECTROLYTE-INSULATOR-SEMICONDUCTOR;
ELECTROSTATIC INTERACTIONS;
FIELD EFFECT SENSORS;
FLAT-BAND VOLTAGE;
INSULATOR SURFACES;
IONIZATION STATE;
LABEL-FREE DETECTION;
NOVEL DEVICES;
ORGANIC SEMICONDUCTOR;
OUTPUT SIGNAL;
PH SENSING;
POLY-L-LYSINE;
POSITIVELY CHARGED;
SINGLE-STRANDED DNA;
ALGEBRA;
AMINO ACIDS;
BIOSENSORS;
DNA;
ELECTROLYTES;
GENES;
INSULATING MATERIALS;
IONIZATION POTENTIAL;
PH SENSORS;
SIGNAL DETECTION;
PH EFFECTS;
COMPLEMENTARY DNA;
ELECTROLYTE;
POLYLYSINE;
SINGLE STRANDED DNA;
ARTICLE;
BIOSENSOR;
CONTROLLED STUDY;
DISPOSABLE EQUIPMENT;
DNA DETERMINATION;
ELECTRIC POTENTIAL;
IONIZATION;
PH;
SEMICONDUCTOR;
SENSITIVITY AND SPECIFICITY;
SIGNAL TRANSDUCTION;
STATIC ELECTRICITY;
SURFACE CHARGE;
BASE SEQUENCE;
BIOSENSING TECHNIQUES;
DNA;
DNA, COMPLEMENTARY;
ELECTROLYTES;
HYDROGEN-ION CONCENTRATION;
INSULATOR ELEMENTS;
SEMICONDUCTORS;
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EID: 77953537815
PISSN: 09565663
EISSN: None
Source Type: Journal
DOI: 10.1016/j.bios.2010.04.041 Document Type: Article |
Times cited : (33)
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References (30)
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