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Blending the boundaries: Enhancing ion transport with electrokinetics
Arputha Muthuselvi Samuel Paul
Soft matter, Fluidics and Interfaces
Research output
:
Thesis
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PhD Thesis - Research UT, graduation UT
183
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Earth and Planetary Sciences
Electrokinetics
100%
Speed
100%
Ion
100%
Boundary
100%
Electric Field
66%
Boundary Layer Thickness
66%
Electrolysis
66%
Vortex
66%
Solid
66%
Species
66%
Research Work
33%
Rate
33%
Electric Potential
33%
Convention
33%
Flow Velocity
33%
Condition
33%
Gradient
33%
Thesis
33%
Goal
33%
Motivation
33%
Potential Gradient
33%
Zeta Potential
33%
Mixing
33%
Chemistry
Ion
100%
Surface
100%
Procedure
100%
Velocity
75%
Vortex
50%
Electroosmosis
50%
Solid
50%
Thickness
50%
Energy
50%
Electric Field
50%
Mixing
25%
Electric Double Layer
25%
Concentration
25%
Flow Kinetics
25%
Voltage
25%
Rate
25%
Physics
Ion
100%
Boundaries
100%
Speed
60%
Gradients
40%
Electrolysis
40%
Solid State
40%
Electric Fields
40%
Eddy
40%
Work
20%
Flow Velocity
20%
Motivation
20%
Electric Potential
20%
Nanoscale
20%
Material Science
Boundary Layer
100%
Blending
100%
Fluid
100%
Velocity
60%
Surface
60%
Solid
40%
Mixing
20%
Surface Charge
20%