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Biofunctionalised surfaces for molecular sensing: Dissertation
Sanna Auer
VTT Technical Research Centre of Finland
Tampere University of Technology (TUT)
Research output
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Thesis
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Dissertation
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Collection of Articles
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Dive into the research topics of 'Biofunctionalised surfaces for molecular sensing: Dissertation'. Together they form a unique fingerprint.
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Keyphrases
Biomolecules
100%
Non-specific Binding
100%
Bioinspired Surfaces
100%
Molecular Sensing
100%
Avidin
80%
Fab Fragment
60%
Cell Attachment
60%
Nanomolar Detection
60%
Specific Antibodies
40%
Polymerase Chain Reaction
40%
Label-free Detection
40%
Reaction Products
40%
Highly Sensitive
40%
Physisorbed
40%
Detection Range
40%
Sample Matrix
40%
Biomolecular
40%
Lipoate
40%
Polymer Molecules
40%
Difficult Samples
40%
Oligonucleotide Sequence
40%
Neuronal Stem Cells
40%
3,4-methylenedioxymethamphetamine
40%
Tissue Engineering
20%
Immobilization
20%
Antibody Fragment
20%
Thiols
20%
Self-assembled Monolayer
20%
Complementary DNA (cDNA)
20%
Diagnostic Detection
20%
Breast Cancer
20%
High Sensitivity
20%
Sensitive Detection
20%
Repellent
20%
Cell-based
20%
Solid Surface
20%
Non-oriented
20%
Gold Surface
20%
Environmental Monitoring
20%
Time Label
20%
Molecular Surface
20%
Saliva
20%
Biomolecular Recognition
20%
Surface Plasmon Resonance
20%
Hydrophilic Polymers
20%
Biomolecule Immobilization
20%
Disulfide Groups
20%
Cancer-specific
20%
Thiol Groups
20%
Oligonucleotides
20%
Neuronal Cells
20%
Reactive Thiols
20%
Drugs of Abuse
20%
Sensing Molecules
20%
Protein-DNA Complex
20%
Selective Surface
20%
Serum Proteins
20%
Efficient Reduction
20%
Biotinylation
20%
Optimal Function
20%
Cell Plate
20%
Differentiated Neurons
20%
Sensitive Labels
20%
Molecules on Surfaces
20%
Toxin Engineering
20%
Small-sized
20%
Nanomolar Concentrations
20%
Neurospheres
20%
Chemistry
Primary Structure
100%
Oligonucleotide
100%
Chain Reaction
66%
Lipoate
66%
Label
66%
3,4-methylenedioxymethamphetamine
66%
Complementary DNA
33%
Disulfide Group
33%
Molecular Surface
33%
Buffer Solution
33%
Thiol Group
33%
Sensitive Detection
33%
Deoxyribonucleic Acid
33%
Biotinylation
33%
Surface Plasmon Resonance
33%
Thiol
33%
Engineering
Biomolecule
100%
Application Field
33%
Detection Range
33%
Sample Matrix
33%
Neural Stem Cell
33%
Polymer Molecule
33%
Biosensor
33%
Chain Reaction
33%
Hydrophilicity
16%
Self-Assembled Monolayers
16%
Surface Plasmon
16%
Antibody Molecule
16%
Sensitive Detection
16%
Selective Surface
16%
Tissue Engineering
16%
INIS
surfaces
100%
molecules
50%
detection
31%
avidin
18%
proteins
13%
polymers
13%
concentration
13%
matrices
13%
antibodies
13%
oligonucleotides
13%
applications
9%
stem cells
9%
sensitivity
9%
gold
9%
range
9%
drugs
9%
thiols
9%
dna
9%
polymerase chain reaction
9%
comparative evaluations
4%
engineering
4%
buffers
4%
tissues
4%
monitoring
4%
reduction
4%
solids
4%
resonance
4%
antigens
4%
plates
4%
cancer
4%
orientation
4%
cell cultures
4%
breasts
4%
toxins
4%
plasmons
4%
blocking
4%
saliva
4%
disulfides
4%
Material Science
Stem Cell
100%
Polymerase Chain Reaction
100%
Self Assembled Monolayer
50%
Hydrophilic Polymer
50%
Surface Plasmons
50%
Sensitive Detection
50%
Chemical Engineering
Sensitive Detection
100%