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Synthesis and Analytical Centrifugation of Magnetic Model Colloids
B. Luigjes
Physical and Colloid Chemistry
Sub Physical and Colloid Chemistry
Research output
:
Thesis
›
Doctoral thesis 1 (Research UU / Graduation UU)
Overview
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Dive into the research topics of 'Synthesis and Analytical Centrifugation of Magnetic Model Colloids'. Together they form a unique fingerprint.
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Keyphrases
Colloids
100%
Analytical Centrifugation
100%
Magnetic Model
100%
Nanoparticles
60%
Equation of State
60%
Magnetic Colloids
60%
Magnetic Nanoparticles
60%
Thermodynamics
40%
Iron Oxide
40%
Oil Phase
40%
Coupling Parameter
40%
Analytical Ultracentrifuge
40%
Osmotic Pressure
40%
Composite Colloids
40%
Dipolar Coupling Constant
40%
Magnetic Properties
20%
Colloidal Dispersion
20%
Colloidal Particles
20%
High Density
20%
Thermodynamically Stable
20%
Phase Separation
20%
Low Polydispersity
20%
Evolution over Time
20%
Phase Transition
20%
Crystallinity
20%
Experimental Realization
20%
Accurate Method
20%
Stability Analysis
20%
Apolar Solvents
20%
Concentrated Dispersion
20%
Crystal Defects
20%
Relative Volume
20%
Van Der Waals
20%
Magnetic Measurements
20%
Inter-particle
20%
Size-polydispersity
20%
Pickering Emulsion
20%
Magnetic Iron Oxide Nanoparticles
20%
Twin Defects
20%
Magnetic Dipole Moment
20%
Cobalt Ferrite Nanoparticles
20%
Dipolar Hard Spheres
20%
Aqueous Nanoparticles
20%
Optical Path Length
20%
Centerpiece
20%
Dipolar Coupling
20%
Osmotic Second Virial Coefficient
20%
Glass Capillary
20%
Dislocation Density
20%
Thermodynamic Properties
20%
Geometric Size
20%
Magnetic Composite
20%
Single-domain Nanoparticles
20%
3-methacryloxypropyltrimethoxysilane
20%
Emulsion Droplet Size
20%
Measuring Cell
20%
Van't Hoff Law
20%
Oilfield Produced Water
20%
Material Science
Nanoparticle
100%
Magnetic Nanoparticle
42%
Dipolar Coupling
42%
Coupling Constant
28%
Density
14%
Surface (Surface Science)
14%
Cobalt
14%
Magnetic Property
14%
Iron Oxide
14%
Magnetic Composite
14%
Crystal Defect
14%
Composite Material
14%