Keyphrases
Free Energy
100%
Diblock Copolymer
98%
Lamellar Phase
88%
Phase Diagram
76%
Adsorption
72%
Charged Surface
70%
Lamellae
69%
Ionic Solution
62%
Polyelectrolyte
62%
Surface Tension
62%
Electrostatic Interaction
61%
Mean Field
57%
Surfactant
54%
Poisson-Boltzmann Theory
50%
Block Copolymer
49%
Electric Field (E-field)
48%
Aqueous Solution
43%
Counterion
42%
Phase Transition
41%
Air-water Interface
39%
Charged Membrane
34%
Surfactant Adsorption
33%
Phase Behavior
32%
Charge Regulation
31%
Fluid Interface
30%
Lateral Phase Separation
30%
Dielectric Constant
29%
Loop Expansion
29%
Poisson-Boltzmann
28%
Modulated Phases
28%
Salt Concentration
27%
Surface Charge
26%
Potts Model
26%
Lipids
25%
Lipid Membrane
25%
Langmuir Monolayers
25%
Annealing
24%
Persistence Length
23%
Line Tension
23%
Condensation
23%
Self-assembly
23%
First-order Phase Transition
22%
Two-component
22%
Order Parameter
22%
Polyelectrolyte Adsorption
22%
Mobile Ions
22%
Macroions
22%
Concentrated Electrolyte
22%
Self-consistent Field Theory
22%
Finite Size
21%
Engineering
Boltzmann Equation
72%
Dielectrics
54%
Charged Surface
37%
Electric Field
37%
Charge Regulation
36%
Expansion Loops
34%
Two Dimensional
32%
Aqueous Solution
28%
Salt Concentration
27%
Monomer
25%
Phase Separation
25%
Boundary Condition
23%
Colloid
22%
Thin Films
22%
Surfactant Adsorption
22%
Thermal Fluctuation
21%
Surfactant
20%
Fluid Interface
19%
Ionic Strength
18%
Good Agreement
18%
Surface Charge Density
17%
Potts Model
16%
Ionic Concentration
15%
Monolayers
14%
Surfactant System
14%
Ionic Surfactant
14%
Partition Function
13%
Electric Double Layer
13%
Line Tension
13%
Fluid Viscosity
13%
Counterion Concentration
12%
Combined Effect
12%
Order Disorder Transition
12%
Physical System
12%
External Field
11%
Field Expansion
11%
Energy Minimisation
11%
Attractive Force
11%
Ising Model
11%
Electrostatic Potential
11%
Mobile Ion
11%
Coulomb Interaction
11%
Interaction Potential
11%
Field Result
11%
Binary Mixture
11%
Microemulsion
11%
Planar Surface
11%
Surface Separation
10%
Theoretical Method
10%
Degree of Freedom
9%