Keyphrases
Sensitive Detection
100%
Nucleic Acids
100%
Silicon Nanowires (SiNWs)
100%
Oxide Dielectrics
100%
MicroRNA
100%
Hafnium Oxide
100%
MiR-10b
100%
DNA Analog
100%
HfO2
66%
Surface Functionalization
66%
MicroRNA-21 (miR-21)
66%
Point-of-care Diagnostics
33%
Limit of Detection
33%
Highly Sensitive
33%
Gene Silencing
33%
Small Interfering RNA (siRNA)
33%
Gene Expression
33%
Oligonucleotides
33%
NWFET
33%
DNA Target
33%
Single-stranded DNA (ssDNA)
33%
Protein-coding Genes
33%
Poly-L-lysine
33%
Point-of-care
33%
Targeted Sequencing
33%
Label-free Detection
33%
Device Performance
33%
Dielectric
33%
Highly Selective
33%
Passivated
33%
Breast Cancer
33%
Biosensing Applications
33%
High-k Dielectric
33%
Medical Diagnostics
33%
Surface Assembly
33%
Massive Parallelism
33%
Exposed Area
33%
Ion Transport
33%
Widespread Adoption
33%
Biosensing Platform
33%
Detection Rate
33%
Fluid Contact
33%
Performance Issues
33%
Gate Current
33%
Silicon Nanowire Field-effect Transistor (SNWFET)
33%
RNA Oligonucleotide
33%
Translational Repression
33%
Stability Issues
33%
Current Instability
33%
Nanobiosensor
33%
Promising Target
33%
Gate Leakage
33%
Biochemistry, Genetics and Molecular Biology
Surface Property
100%
Nucleic Acid
100%
MicroRNA
100%
Molecular Wire
100%
Sensitive Detection
100%
Oligonucleotide
66%
RNA
33%
Gene Silencing
33%
DNA Template
33%
Lysine
33%
Molecular Weight
33%
Liquid
33%
Single-Stranded DNA
33%
Ion Transport
33%
Material Science
Silicon
100%
Nanowire
100%
Dielectric Material
100%
Oxide Compound
100%
Sensitive Detection
100%
Nucleic Acid
100%
Hafnium
100%
Surface Functionalization
66%
Field Effect Transistor
33%
Engineering
Nanowires
100%
Oligomer
100%
Dielectrics
100%
Sensitive Detection
100%
Biosensing
66%
Surface Functionalisation
66%
Field-Effect Transistor
33%
Strand
33%
Molecular Weight
33%
Device Performance
33%
Health Care
33%
Repression
33%
Nanobiosensor
33%