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Standalone operation of an EGOFET for ultra-sensitive detection of HIV
Sunil Kumar Sailapu
, Eleonora Macchia
, Irene Merino-Jimenez
, Juan Pablo Esquivel
, Lucia Sarcina
, G. Scamarcio
,
Shelley D. Minteer
, Luisa Torsi
, Neus Sabaté
Autonomous University of Barcelona
University of Bari
Åbo Akademi University
National Research Council of Italy
University of Utah
CSGI (Centre for Colloid and Surface Science)
ICREA
Research output
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Article
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peer-review
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Keyphrases
Ultrasensitive Detection
100%
Stand-alone Operation
100%
EGFET
100%
Self-powered
66%
Point-of-care
66%
P24 Antigen
66%
HIV-1 Infection
33%
Assure
33%
Early Diagnosis
33%
Ultrasensitive
33%
User Guidelines
33%
Blood Samples
33%
Infectious Diseases
33%
Single Molecule
33%
Treatment Duration
33%
Field Deployment
33%
External Power Source
33%
Paper-based Biofuel Cell
33%
Recognition Events
33%
Gate Electrode
33%
Equipment-free
33%
Minimal Components
33%
Capsid Protein
33%
Point-of-care Solution
33%
Readout Mechanism
33%
Early-stage Detection
33%
Interface Circuit
33%
Biorecognition
33%
Engineering
Care Device
100%
Self-Powered
100%
Sensitive Detection
100%
Field-Effect Transistor
50%
Proof-of-Concept
50%
External Power Source
50%
Gate Electrode
50%
Blood Sample
50%
Biological fuel cells
50%
Chemistry
Field Effect
100%
Sensitive Detection
100%
electrode
100%
Biofuel
100%
Antigen
100%
Material Science
Electronic Circuit
100%
Field Effect Transistor
100%
Sensitive Detection
100%
Biofuel
100%
Antigen
100%
Biochemistry, Genetics and Molecular Biology
Human Immunodeficiency Virus 1
100%
Human immunodeficiency virus
100%
P24 Capsid Protein
33%
Nursing and Health Professions
Capsid Protein
33%
Biofuel
33%
Time to Treatment
33%
Antigen P24
33%