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Self-Assembled Water Chains: A Scanning Probe Microscopy Approach
Byung Il Kim
Physics Department
Research output
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Book/Report
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Book
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peer-review
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Dive into the research topics of 'Self-Assembled Water Chains: A Scanning Probe Microscopy Approach'. Together they form a unique fingerprint.
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Keyphrases
Water Chain
100%
Scanning Probe Microscopy
100%
Liquid-like
100%
Confined Water
100%
Scanning Probe
100%
Clay
50%
Force Microscope
50%
Cantilever-based
50%
Interfacial Forces
50%
Performance Improvement
50%
Ion Channels
50%
Biomolecules
50%
Interfacial Interaction
50%
Double Layer Forces
50%
Enzyme Activity
50%
Surface Water
50%
Ionic Strength
50%
Molecular Scale
50%
Interfacial Water
50%
Nanotechnology
50%
Book Covers
50%
Water Play
50%
Water-based
50%
Micro-electro-mechanical Systems
50%
Water Column
50%
Biopolymers
50%
Biotechnology
50%
Atomic Scale
50%
Membrane Probes
50%
Water Issues
50%
Chip-based
50%
Dip-pen Nanolithography
50%
Silicon-based
50%
Nanofluidic Devices
50%
Granular Interactions
50%
Hydration Layer
50%
Moving Component
50%
Water Ions
50%
Electrostatic Double Layer
50%
Nanolubricant
50%
Protein Folding Stability
50%
Derjaguin
50%
Nano-oxidation
50%
Bioactive Surface
50%
Long-range Electrostatics
50%
Colloidal Suspension
50%
Engineering
Scanning Probe Microscopy
100%
Confined Water
100%
Biomolecule
50%
Colloid
50%
Double Layer
50%
Electrostatic Force
50%
Ionic Strength
50%
Interfacial Interaction
50%
Layer Force
50%
Nanofluidics
50%
Micro-Electro-Mechanical System
50%
Channelling
50%
Enzymatic Activity
50%
Derjaguin
50%
Dip-Pen Nanolithography
50%
Surface Water
50%
Biopolymer
50%
Chemistry
Scanning Probe Microscopy
100%
Silicon
50%
Electrostatic Force
50%
Enzyme Activity
50%
Surface Water
50%
Biotechnology
50%
Protein Folding
50%
Ion Channeling
50%
Water Oxidation
50%
Ionic Strength
50%
Colloid
50%
Interfacial Water
50%
Biopolymer
50%
Nanolithography
50%
Microelectromechanical System
50%
Nanofluidics
50%
Hydration Layer
50%
Material Science
Scanning Probe Microscopy
100%
Silicon
50%
Microelectromechanical System
50%
Protein Folding
50%
Nanofluidics
50%
Enzyme Activity
50%
Biopolymer
50%
Biochemistry, Genetics and Molecular Biology
Scanning Probe Microscopy
100%
Static Electricity
50%
Enzyme Activity
50%
Ion Channel
50%
Protein Folding
50%
Biopolymer
50%
Ionic Strength
50%
Chemical Engineering
Colloid
100%
Biotechnology
100%
Microelectromechanical System
100%
Nanotechnology
100%