共查询到20条相似文献,搜索用时 0 毫秒
1.
Single- and double-stranded DNA and many biological and synthetic polyelectrolytes undergo two structural transitions upon
increasing the concentration of multivalent salt or molecules. First, the expanded-stretched chains in low monovalent salt
solutions collapse into nearly neutral compact structures when the density of multivalent salt approaches that of the monomers.
With further addition of multivalent salt the chains redissolve acquiring expanded-coiled conformations. We study the redissolution
transition using a two-state model (F.J. Solis, M. Olvera de la Cruz, J. Chem. Phys. 112, 2030 (2000)). The redissolution occurs when there is a high degree of screening of the electrostatic interactions between
monomers, thus reducing the energy of the expanded state. The transition is determined by the chemical potential of the multivalent
ions in the solution, μ and the inverse screening length, κ. The transition point also depends on the charge distribution
along the chain but is nearly independent of the molecular weight and degree of flexibility of the polyelectrolytes. We generate
a diagram of μversusκ2 where we find two regions of expanded conformations, one with charged chains and the other with overcharged (inverted charge)
chains, separated by a collapsed nearly neutral conformation region. The collapse and redissolution transitions occur when
the trajectory of the properties of the salt crosses the boundaries between these regions. We find that in most cases the
redissolution occurs within the same expanded branch from which the chain precipitates.
Received 15 May 2000 and Received in final form 28 June 2000 相似文献
2.
I. Sabbagh M. Delsanti P. Lesieur 《The European Physical Journal B - Condensed Matter and Complex Systems》1999,12(2):253-260
Anomalous small angle X-ray scattering experiments show that before demixion in sodium polyacrylate/cobalt and sodium polyacrylate/calcium
mixtures all the divalent counterions are in the close vicinity of the polyacrylate chain. The present results are consistent
with previous UV/VIS spectroscopy, which have shown that all cobalt ions are chemically associated with acrylate groups. The
chemical association dehydrates the acrylate monomers. However, the hydrophobicity of the complexed monomers is not strong
enough to induce a collapse of the polymer chain at small spatial scale before the demixion. Indeed, the scattered intensity
(X-ray and neutron scattering) decreases with the scattering vector q as q-x with for q > 0.1 nm
-1 which indicates that the local conformation of the chain is Gaussian.
Received 21 January 1999 相似文献
3.
J.J. Arenzon J.F. Stilck Y. Levin 《The European Physical Journal B - Condensed Matter and Complex Systems》1999,12(1):79-82
We present a simple model for the possible mechanism of appearance of attraction between like charged polyions inside a polyelectrolyte
solution. The attraction is found to be short ranged, and exists only in the presence of multivalent counterions. It is produced
by the correlations in layers of condensed counterions surrounding each polyion and is only weakly temperature dependent.
We find the attraction to be maximum at zero temperature and dimish as the temperature is raised. The attraction is only possible
if the number of condensed counterions exceeds the threshold, , where is the valence of counterions and Z is the polyion charge.
Received 10 March 1999 and Received in final form 20 April 1999 相似文献
4.
Binder K 《The European physical journal. E, Soft matter》2002,9(3):293-298
After a brief review of the scaling concepts for static and dynamic properties of polymer brushes in good solvents and Theta
solvents, the Monte Carlo evidence is discussed. It is shown that under typical conditions the diameter of the last blob is
of the order of 10-20% of the brush height, and therefore pronounced deviations from the self-consistent field predictions
occur. In bad solvents, lateral microphase separation occurs leading to an irregular pattern of “dimples”. Particularly interesting
is the response of brushes to shear deformation, and the interaction between two interpenetrating brushes. Recent attempts
to understand the resulting shear forces via molecular-dynamics simulations are briefly described, and an outlook on related experiments is given.
Dedicated to Prof. H.E. Stanley on the occasion of his 60th birthday
Received 11 March 2002 and Received in final form 3 June 2002 相似文献
5.
Studies performed on strong polyelectrolytes and on a weak polyelectrolyte, sodium poly(acrylate), show that their stability
in presence of multivalent cations depends on the chemical nature of the charged side groups of the polymer. For sulfonate
groups (SO3
-) or sulfate groups (OSO3
-) phase separation generally occurs in presence of inorganic cations of valency 3 (as La3+) or larger and a resolubilization takes place at high salt concentration. The interactions of the polyelectrolyte with multivalent
cations are of electrostatic origin and the phase diagrams are weakly dependent on the chemical nature of the polymer backbone
and on the specificity of the counterions. For acrylate groups, (COO-), the phase separation was observed with inorganic cations of valency 2 (as Ca2+) or larger without resolubilization at high salt concentration. The phase separation is due to a chemical association between
cations and acrylate groups of two neighboring monomers of the same chain. This chemical association creates a hydrophobic
complex by dehydrating both monomer and cation. With organic trivalent cation, as spermidine +H3N(CH2)4NH2
+(CH2)3NH3
+, where no chemical association occurs with the charged side groups COO- or SO3
- of the polyelectrolyte, similar phase diagrams were observed whatever was the polyelectrolyte with a resolubilization at
high trivalent cation concentration.
Received 3 March 1999 and Received in final form 2 September 1999 相似文献
6.
G. Migliorini V.G. Rostiashvili T.A. Vilgis 《The European physical journal. E, Soft matter》2001,4(4):475-487
A variational approach is considered to calculate the free energy and the conformational properties of a polyelectrolyte chain
in d dimensions. We consider in detail the case of pure Coulombic interactions between the monomers, when screening is not present,
in order to compute the end-to-end distance and the asymptotic properties of the chain as a function of the polymer chain
length N. We find R≃N
ν(log N)γ, where ν = and λ is the exponent which characterizes the long-range interaction U∝ 1/r
λ. The exponent γ is shown to be non-universal, depending on the strength of the Coulomb interaction. We check our findings
by a direct numerical minimization of the variational energy for chains of increasing size 24 < N < 215. The electrostatic blob picture, expected for small enough values of the interaction strength, is quantitatively described
by the variational approach. We perform a Monte Carlo simulation for chains of length 24 < N < 210. The non-universal behavior of the exponent γ previously derived within the variational method is also confirmed by the simulation
results. Non-universal behavior is found for a polyelectrolyte chain in d = 3 dimension. Particular attention is devoted to the homopolymer chain problem, when short-range contact interactions are
present.
Received 8 August 2000 and Received in final form 19 December 2000 相似文献
7.
P. Guenoun M. Delsanti D. Gazeau J.W. Mays D.C. Cook M. Tirrell M. Tirrell L. Auvray 《The European Physical Journal B - Condensed Matter and Complex Systems》1998,1(1):77-86
Aqueous micellar solutions of ionic/neutral block copolymers have been studied by light scattering, small angle neutron scattering
and small angle X-ray scattering. We made use of a polymer comprised of a short hydrophobic block (polyethylene-propylene)
PEP and of a long polyelectrolytic block (polystyrene-sulfonate) PSSNa which has been shown previously to micellize in water.
The apparent polydispersity of these micelles is studied in detail, showing the existence of a few large aggregates coexisting
with the population of micelles. Solutions of micelles are found to order above some threshold in polymer concentration. The
order is liquid-like, as demonstrated by the evolution with concentration of the peak observed in the structure factor (), and the degree of order is found to be identical over a large range of concentrations (up to 20 wt%). Consistent values
of the aggregation number of the micelles are found by independent methods. The effect of salt addition on the order is found
to be weak.
Received: 19 June 1997 / Received in final form: 4 September 1997 / Accepted: 9 October 1997 相似文献
8.
Zhulina EB Birshtein TM Borisov OV 《The European physical journal. E, Soft matter》2006,20(3):243-256
We revise the classical Daoud-Cotton (DC) model to describe conformations of polymer and polyelectrolyte chains end-grafted to convex spherical and cylindrical surfaces.
In the framework of the DC model, local stretching of chains in the brush does not depend on the degree of polymerization of grafted chains, and the
polymer density profile follows a single-exponent power law. This model, however, does not correspond to a minimum in free
energy of the curved brush. The nonlocal (NL) approximation exploited in the present paper implies the minimization of the overall free energy of the brush and predicts
that the polymer density profile does not follow a single-exponent power law. In the limit of large surface curvature the
NL approximation provides the same scaling laws for brush thickness and free energy as the local DC model. Numerical prefactors are however different. Extra extension of chains in the brush interior region leads to larger
equilibrium brush thickness and lower free energy per chain. A significant difference between outcomes of the two models is
found for brushes formed by ionic polymers, particularly for weakly dissociating (p H-sensitive) polyelectrolytes at low solution salinity. 相似文献
9.
D. Langevin 《The European physical journal. E, Soft matter》2001,5(1):81-85
Studies of thin liquid films, made from semidilute polyelectrolyte solutions, are presented. The disjoining pressure variation
with film thickness exhibits oscillations, corresponding to film stratification. The oscillations become sharper as the polymer
concentration c increases, and disappear when salt is added. The period of the oscillations scales as c
-1/2. The observed stratification is related to the polymer network and the size of the steps to the mesh size ξ.
Received 25 April 2000 and Received in final form 3 October 2000 相似文献
10.
R.R. Netz H. Orland 《The European Physical Journal B - Condensed Matter and Complex Systems》1999,8(1):81-98
Variational methods are applied to a single polyelectrolyte chain. The polymer is modeled as a Gaussian chain with screened
electrostatic repulsion between all monomers. As a variational Hamiltonian, the most general Gaussian kernel, including the
possibility of a classical or mean polymer path, is employed. The resulting self-consistent equations are systematically solved
both for large and small monomer-monomer separations along the chain. In the absence of screening, the polymer is stretched
on average. It is described by a straight classical path with Gaussian fluctuations around it. If the electrostatic repulsion
is screened, the polymer is isotropically swollen for large separations, and for small separations the polymer correlation
function is calculated as an analytic expansion in terms of the monomer-monomer separation along the chain. The electrostatic
persistence length and the electrostatic blobsize are inferred from the crossover between distinct scaling ranges. We perform
a global analysis of the scaling behavior as a function of the screening length and electrostatic interaction strength , where is the Bjerrum length and A is the distance of charges along the polymer chain. We find three different scaling regimes. i) A Gaussian-persistent regime with Gaussian behavior at small, persistent behavior at intermediate, and isotropically swollen behavior at large length
scales. This regime occurs for weakly charged polymers and only for intermediate values of the screening length. The electrostatic
persistence length is defined as the crossover length between the persistent and the asymptotically swollen behavior and is given by and thus disagrees with previous (restricted) variational treatments which predict a linear dependence on the screening length
.ii) A Gaussian regime with Gaussian behavior at small and isotropically swollen behavior at large length scales. This regime occurs for weakly
charged polymers and/or strong screening, and the electrostatic repulsion between monomers only leads to subfluent corrections
to Gaussian scaling at small separations. The concept of a persistence length is without meaning in this regime. iii) A persistent regime , where the chain resembles a stretched rod on intermediate and small scales. Here the persistence length is given by the
original Odijk prediction, , if the overstretching of the chain is avoided. We also investigate the effects of a finite polymer length and of an additional
excluded-volume interaction, which modify the resultant scaling behavior. Applications to experiments and computer simulations
are discussed.
Received 24 December 1997 相似文献
11.
We discuss the structure and the interaction of telechelic brushes. We show that the association of functionalized chain ends
is capable of giving rise to attractive interactions between telechelic brush-covered surfaces, in contrast to conventional
repulsion. Our predictions for the interaction free energy are in agreement with experimental data.
Received 12 June 2000 and Received in final form 29 January 2001 相似文献
12.
We discuss theoretically the relaxation of charge fluctuations in polyampholyte solutions. It has been shown previously by
some of us (J. Wittmer et al. Europhys. Lett. 24, 263 (1993)) that the charge distribution along the polyampholyte backbone has a dramatic influence on the polarization energy
and hence on the solubility. Here it is demonstrated that a similar effect exists for the charge relaxation. The charge relaxation
mechanism qualitatively depends on the statistics: for alternating polyampholytes the relaxation is mainly due to local dipole
inversion and is not primarily driven by electrostatic interactions, whereas for random polyampholytes it is driven by electrostatic
interactions. Intermediate statistics (with short-ranged (exponential) correlations) appear as a combination of these two
limiting cases: short-wavelength modes are insensitive to the loss of correlations along the backbone, whereas long-wavelength
modes correspond to a random statistics with renormalized charges. The relaxation of the dielectric constant is also calculated.
Received: 20 December 2002 / Accepted: 13 March 2003 / Published online: 24 April 2003
RID="a"
ID="a"e-mail: johner@ics.u-strasbg.fr 相似文献
13.
Using Monte Carlo simulations, we study the counterion distribution close to planar charged walls in two geometries: i) when
only one charged wall is present and the counterions are confined to one half-space, and ii) when the counterions are confined
between two equally charged walls. In both cases the surface charge is smeared out and the dielectric constant is the same
everywhere. We obtain the counterion density profile and compare it with both the Poisson-Boltzmann theory (asymptotically
exact in the limit of weak coupling, i.e. low surface charge, high temperature and low counterion valence) and the strong-coupling theory (valid in the opposite limit
of high surface charge, low temperature and high counterion valence) and with previously calculated correction terms to both
theories for different values of the coupling parameter, thereby establishing the domain of validity of the asymptotic limits.
Gaussian corrections to the leading Poisson-Boltzmann behavior (obtained via a systematic loop expansion) in general perform quite poorly: At coupling strengths low enough so that the Gaussian (or one-loop)
correction does describe the numerical deviations from the Poisson-Boltzmann result correctly, the leading Poisson-Boltzmann
term by itself matches the data within high accuracy. This reflects the slow convergence of the loop expansion. For a single
charged plane, the counterion pair correlation function indicates a behavioral change from a three-dimensional, weakly correlated
counterion distribution (at low coupling) to a two-dimensional, strongly correlated counterion distribution (at high coupling),
which is paralleled by the specific-heat capacity which displays a rounded hump at intermediate coupling strengths. For the
case of counterions confined between two equally charged walls, we analyze the inter-wall pressure and establish the complete
phase diagram, featuring attraction between the walls for large enough coupling strength and at intermediate wall separation.
Depending on the thermodynamic ensemble, the phase diagram exhibits a discontinuous transition where the inter-wall distance
jumps to infinity (in the absence of a chemical potential coupling to the inter-wall distance, as for charged lamellae in
excess solvent) or a critical point where two coexisting states with different inter-wall distance become indistinguishable
(in the presence of a chemical potential, as for charged lamellae with a finite fixed solvent fraction). The attractive pressure
decays with the inter-wall distance as an inverse cube, similar to analytic predictions, although the amplitude differs by
an order of magnitude from previous theoretical results. Finally, we discuss in detail our simulation methods and compare
the finite-size scaling behavior of different boundary conditions (periodic, minimal image and open).
Received 6 November 2001 相似文献
14.
We discuss the adsorption of polymer gels on flat surfaces. Even in cases of complete wetting where the spreading power S is positive and where an equivalent liquid would spread, the elastic stresses due to the gel deformation upon adsorption
oppose the spreading. The competition between elasticity characterized by the bulk shear modulus G and capillarity characterized by the spreading power S defines a typical length scale ℓ = S/G for the deformation in the gel. For loose gels ℓ can be of the order of 1 μm. Macroscopic gels larger than ℓ deform only
at their edges over a region of size ℓ. Microscopic gels smaller than ℓ show a finite deformation despite the elastic stresses.
The elastic stresses limit the spreading of the polymer, but solvent can be sucked out of a swollen gel by wetting the surface.
The thin solvent film can extend rather far from the gel edge and carry solvent. We calculate the kinetics of the solvent
film formation and of the solvent transfer from a more swollen gel to a less swollen gel.
Received 16 July 2001 相似文献
15.
In a SANS experiment, we have directly determined for the first time the conformation of hyaluronan, a model semirigid polyelectrolyte. At high ionic strength, this is completely possible, where the scattered intensity crosses over (when decreasing q) from a q(-1) rod variation to a q(-2) and, where fitting to the "wormlike" chain model gives the backbone, intrinsic, persistence length: L0 = 86.5 A. At low ionic strength, we can safely check that the measured persistence length appears increased by at least the amount predicted by Odijk for the electrostatic contribution, L(e) (approximately kappa(-2), square of the Debye screening length). However, the intensity at the lowest q is not only due to the single chain, since it crosses over from a q(-1) to a q(-4) variation, characteristic of polymer associations. 相似文献
16.
The interaction between two parallel plates due to non-adsorbing polymer chains with excluded volume is calculated using the
adsorption method. The adsorption is calculated from the profile of the polymer segment concentration between the plates,
which is obtained from the product function of the concentration profile near a single wall, involving the correlation length.
The renormalization group theory provides expressions for the osmotic pressure and consequently for the osmotic compressibility,
chemical potential and correlation length of a polymer solution. Both the local polymer concentration profiles as well as
the minimum of the interaction potential between the plates agree with recently published self-avoiding random walk computer
simulations.
Received 9 August 2001 相似文献
17.
A.G. Moreira R.R. Netz 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2002,21(1):83-96
Using a field-theoretic approach, we derive the first few coefficients of the exact low-density (“virial”) expansion of a
binary mixture of positively and negatively charged hard spheres (two-component hard-core plasma, TCPHC). Our calculations
are nonperturbative with respect to the diameters d+ and d- and charge valences q+ and q- of positive and negative ions. Consequently, our closed-form expressions for the coefficients of the free energy and activity
can be used to treat dilute salt solutions, where typically d
+∼d
- and q
+∼q
-, as well as colloidal suspensions, where the difference in size and valence between macroions and counterions can be very
large. We show how to map the TCPHC on a one-component hard-core plasma (OCPHC) in the colloidal limit of large size and valence
ratio, in which case the counterions effectively form a neutralizing background. A sizable discrepancy with the standard OCPHC
with uniform, rigid background is detected, which can be traced back to the fact that the counterions cannot penetrate the
colloids. For the case of electrolyte solutions, we show how to obtain the cationic and anionic radii as independent parameters
from experimental data for the activity coefficient.
Received 6 September 2001 / Received in final form 20 May 2002 Published online 24 September 2002 相似文献
18.
E. Zhulina A.V. Dobrynin M. Rubinstein 《The European physical journal. E, Soft matter》2001,5(1):41-49
We develop a scaling theory for a single polyampholyte chain adsorbed on a charged spherical particle in a theta-solvent.
Adsorption of a polyampholyte molecule is due to its polarization in the electrostatic field of the particle. For large particles
with sizes exceeding the thickness of the adsorbed layer, the conformations of the chain are similar to the one found for
polyampholyte adsorption on charged planar surface. However, an adsorbed polyampholyte chain forms a self-similar flower-like
structure near the particles with sizes smaller than its Gaussian size. These self-similar structures result from the balance
of the polarization energy of loops and the excluded volume interactions between monomers. The structure of an adsorbed polyampholyte
in the flower-like conformation is similar to that of a neutral star polymer.
Received 3 March 2000 and Received in final form 5 July 2000 相似文献
19.
Jarkova E Johner A Maresov EA Semenov AN 《The European physical journal. E, Soft matter》2006,21(4):371-386
A mean-field theory of globules of random amphiphilic copolymers in selective solvents is developed for the case of an annealed
copolymer sequence: each unit can be in one of two states, H (insoluble) or P (soluble or less insoluble). The study is focussed
on the regime when H and P units tend to form long blocks, and when P units dominate in the dilute phase, but are rare in
the globule core. A first-order coil-to-globule transition is predicted at some T = T
cg. The globule core density at the transition point increases as the affinity of P units to the solvent, ˜, is increased. Two
collapse transitions, coil → “loose” globule and “loose” globule → “dense” globule, are predicted if ˜ is high enough and
P units are marginally soluble or weakly insoluble. H and P concentration profiles near the globule surface are obtained and
analyzed in detail. It is shown that the surface excess of P units rises as ˜ is increased. The surface tension decreases
in parallel. Considering the interaction between close enough surfaces of two globules, we show that they always attract each
other at a complete equilibrium. It is pointed out, however, that such equilibrium may be difficult to reach, so that partially equilibrium structures (defined by the condition that a chain forming one globule does not penetrate into the core of the other globule)
are relevant. It is shown that at such partial equilibrium the interaction is repulsive, so the globules may be stabilized
from aggregation. The strongest repulsion is predicted at the coil-to-globule transition point T
cg: the repulsion force decreases with the distance between the surfaces according to a power law. In the general case (apart
from T
cg) the force vs. distance decay becomes exponential; the decay length ξ diverges as T → T
cg. The developed theory explains certain anomalous properties observed for globules of amphiphilic homopolymers. 相似文献
20.
The effect of fixed discrete colloidal charges in the primitive model is investigated for spherical macroions. Instead of
considering a central bare charge, as it is traditionally done, we distribute discrete charges randomly on the sphere. We use molecular dynamics simulations to study this effect on various properties such as
overcharging, counterion distribution and diffusion. In the vicinity of the colloid surface the electrostatic potential may
considerably differ from the one obtained with a central charge. In the strong Coulomb coupling, we showed that the colloidal
charge discretization qualitatively influences the counterion distribution and leads to a strong colloidal charge-counterion
pair association. However, we found that charge inversion still persists even if strong pair association is observed.
Received 30 June 2000 and Received in final form 28 November 2000 相似文献