We propose a model giving the conformation of a star shaped polymer by taking into account the radial variation of the monomer concentration ϕ( r). For an isolated star when increasing r (at the centre of the star r = 0), the variation of ϕ (r) is first given by a constant value (r f1/2 ν-1 l); wh ere f is the number of branches, N the number of monomers in a branch and ν and l are the excluded volume and the length associated to a monomer. For all these cases, it is shown that the size of a branch is always larger than that of a linear polymer made of N monomers. Beyond the overlapping concentration the star conformation is obtained from two characteristic lengths essentially : χ(c ) a radius inside which the branches of the other stars ...
Equilibrium conformations of annealed star-branched polyelectrolytes (polyacids) are calculated with...
We study the swelling of one very large molecule made of N monomers in a mixture of a good solvent a...
We perform Monte Carlo calculations for the mean-square center- to-end distance, mean-square radius ...
We propose a model giving the conformation of a star shaped polymer by taking into account the radia...
Scaling theory describing the conformations of weakly charged star-branched polyelectrolytes in dilu...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
We examine the conformations and effective interaction potentials for two classes of star-branched p...
Star polymers are polymers in which multiple linear chains emerge from one common point to form the ...
ABSTRACT: We present a scaling theory for solutions of star-branched polyelectrolytes in different c...
We perform high-statistics Monte Carlo simulations of a lattice model to compute the radius of gyrat...
An introduction is given to the crossover theory of the conformational and thermodynamic properties ...
Star polymers are prototype systems both for tethered chains as well as for branched polymers. In th...
We discuss the growth of completely branched polymer, based on tertiary amine branch points conected...
An introduction is given to the crossover theory of the conformational and thermodynamic properties ...
We study conformations and dynamics of active star polymers. The analysis shows that active star pol...
Equilibrium conformations of annealed star-branched polyelectrolytes (polyacids) are calculated with...
We study the swelling of one very large molecule made of N monomers in a mixture of a good solvent a...
We perform Monte Carlo calculations for the mean-square center- to-end distance, mean-square radius ...
We propose a model giving the conformation of a star shaped polymer by taking into account the radia...
Scaling theory describing the conformations of weakly charged star-branched polyelectrolytes in dilu...
We study the conformation of randomly branched, monodispersed polymers both in dilute and concentrat...
We examine the conformations and effective interaction potentials for two classes of star-branched p...
Star polymers are polymers in which multiple linear chains emerge from one common point to form the ...
ABSTRACT: We present a scaling theory for solutions of star-branched polyelectrolytes in different c...
We perform high-statistics Monte Carlo simulations of a lattice model to compute the radius of gyrat...
An introduction is given to the crossover theory of the conformational and thermodynamic properties ...
Star polymers are prototype systems both for tethered chains as well as for branched polymers. In th...
We discuss the growth of completely branched polymer, based on tertiary amine branch points conected...
An introduction is given to the crossover theory of the conformational and thermodynamic properties ...
We study conformations and dynamics of active star polymers. The analysis shows that active star pol...
Equilibrium conformations of annealed star-branched polyelectrolytes (polyacids) are calculated with...
We study the swelling of one very large molecule made of N monomers in a mixture of a good solvent a...
We perform Monte Carlo calculations for the mean-square center- to-end distance, mean-square radius ...