Keyphrases
Nanochannel
90%
Janus Particles
80%
Concentration Polarization
58%
Dielectrophoresis
54%
Dielectrophoretic
49%
Permselectivity
45%
Active Particles
43%
Micromotors
41%
Electric Field (E-field)
41%
Biomolecules
39%
Nanoslot
39%
Applied Electric Field
37%
Propulsion
35%
Cargo
32%
Metallo-dielectric
32%
Polarizable
31%
Electrokinetics
30%
Cargo Transportation
29%
Electroosmotic Flow
28%
Overlimiting Current
28%
Label-free
28%
Multi-electrode
25%
Microparticles
25%
Ion Transport
24%
Microfluidics
23%
On chip
22%
Dielectrophoretic Force
21%
On-a-chip
21%
Biosensing
21%
Electroporation
21%
Preconcentration
20%
Individually Addressable
20%
Induced Charge
19%
Induced-charge Electroosmosis
19%
Self-propelled
18%
Nematocysts
18%
Ion Flux
18%
Field Focusing
18%
Depletion Layer
17%
Surface Charge
17%
Nanofluidics
17%
Ion Selectivity
17%
Alternating Current Electric Field
17%
Microchamber
17%
Transient Response
17%
Cargo Loading
17%
Alternating Current
16%
Hybrid Micromotor
16%
Microfluidic Channel
16%
Single-cell Analysis
16%
Engineering
Microchannel
100%
Electric Field
72%
Active Particle
51%
Dielectrics
51%
Concentration Polarization
49%
Induced Charge
46%
Micromotors
46%
Vortex
39%
Applied Electric Field
39%
Alternating Current
38%
Biomolecule
36%
Electroosmotic Flow
31%
Hydrodynamics
29%
Microfluidic Channel
23%
Biosensing
20%
Colloid
20%
Microparticles
19%
Fluidics
18%
Analysis Cell
18%
Ionic Concentration
18%
Rectification
17%
Active Carrier
17%
Space Charge
17%
Diffusion Layer
16%
Depletion Layer
16%
Two Dimensional
15%
Microscale
15%
Electric Double Layer
15%
Crossover
15%
Experimental Result
14%
Field Gradient
14%
Lab-on-a-Chip Device
14%
Transient Analysis
14%
Microfluidic Platform
14%
Nanofluidics
14%
Angular Velocity ω
13%
Electrophoretic Technology
13%
Channel Wall
13%
Velocity Field
13%
Concentration Polarisation Layer
13%
Nanoscale
12%
Conductive
12%
Nonequilibrium
12%
Convective
12%
Experimental Observation
11%
Applied Field
11%
Electrode Array
11%
Fluid Viscosity
11%
Control Dynamics
11%
Drug Delivery
11%