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Capacitance DNA bio-chips improved by new probe immobilization strategies
Sandra Carrara
*
, Andrea Cavallini
, Yusuf Leblebici
, Giovanni De Micheli
, Vijayender Bhalla
, Francesco Valle
, Bruno Samorì
, Luca Benini
, Bruno Riccò
, Inger Vikholm-Lundin
, Tony Munter
*
Corresponding author for this work
VTT Technical Research Centre of Finland
Ecole Polytechnique Fédérale de Lausanne (EPFL)
University of Bologna
VTT (former employee or external)
Research output
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Article
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Scientific
›
peer-review
12
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Keyphrases
Capacitance
100%
Ethylene Glycol
100%
Blocking Agent
100%
Probe Immobilization
100%
Lipoate
100%
Biochip
100%
Immobilization Strategies
100%
New Probes
100%
Film Structure
50%
Microscopy
50%
Label-free Detection
50%
Promising Technology
50%
Surface Quality
50%
Alkanethiol
50%
Capacitance Measurement
50%
Molecular Probe
50%
Point-of-care
50%
Hexanol
50%
Scattered Data Points
50%
DNA Probe
50%
DNA chip
50%
Detection Improvement
50%
Detection Error
50%
Label-free DNA
50%
Label-free DNA Detection
50%
Time Drift
50%
Mercapto
50%
Florescence
50%
Capacitance Spectroscopy
50%
INIS
probes
100%
capacitance
100%
detection
100%
dna
100%
surfaces
80%
data
60%
blocking
60%
molecules
40%
ethylene glycols
40%
films
20%
errors
20%
nanostructures
20%
afm
20%
microscopy
20%
hexanols
20%
Nursing and Health Professions
Blocking Agent
100%
Lipoic Acid
100%
Biochip
100%
Ethylene Glycol
100%
Molecular Probe
50%
Reproducibility
50%
Hexanol
50%
DNA Probe
50%
Chemistry
DNA
100%
Lipoate
66%
Blocking Agent
66%
Ethylene Glycol
66%
Atomic Force Microscopy
33%
Alkanethiol
33%
Capacitance Measurement
33%
DNA Probe
33%
Surface Plasmon Resonance Spectroscopy
33%
Molecular Probe
33%
Engineering
Probe Surface
100%
Error Detection
50%
Surface Quality
50%
Nanoscale
50%
Data Point
50%
Capacitance Measurement
50%
Computer Science
Published Data
100%
Reproducibility
100%
Error Detection
100%
Mathematics
Probe Surface
100%
Superiority
50%
Data Point
50%
Error Detection
50%
Standard Deviation
50%