We have performed self-consistent field (SCF) calculations and Monte Carlo (MC) simulations to analyse the depletion profiles for isolated linear, star-like and H-shaped polymers in good solvent using lattice approximations in both methods. In the SCF approach the intra-molecular excluded-volume effects are accounted for using an approach that resembles Flory's method that leads to the Flory size of the chains. This gives a major improvement over the classical tanh profile, and becomes much closer to the MC results, provided that a Kuhn length of 1.5 is implemented
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...
We have performed self-consistent field (SCF) calculations and Monte Carlo (MC) simulations to analy...
We have performed self-consistent field (SCF) calculations and Monte Carlo (MC) simulations to analy...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
Computer-aided modeling is a systematic approach to grasp the physics of macromolecules, but it rema...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
In this work we study properties of branched polymers in a good solvent. We focus on problematic rel...
In this work we study properties of branched polymers in a good solvent. We focus on problematic rel...
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...
We have performed self-consistent field (SCF) calculations and Monte Carlo (MC) simulations to analy...
We have performed self-consistent field (SCF) calculations and Monte Carlo (MC) simulations to analy...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
We study by Monte Carlo simulation the monomer concentration profile of the dilute solution of linea...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
Computer-aided modeling is a systematic approach to grasp the physics of macromolecules, but it rema...
A hybrid modeling approach is proposed for inhomogeneous polymer solutions. The method is illustrate...
In this work we study properties of branched polymers in a good solvent. We focus on problematic rel...
In this work we study properties of branched polymers in a good solvent. We focus on problematic rel...
We derive a general equation for the depletion thickness delta next to a flat wall in a solution of ...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...
We derive a general equation for the depletion thickness next to a flat wall in a solution of nonads...