Tunable soft structure in charged fluids confined by dielectric interfaces
暂无分享,去创建一个
[1] R. Podgornik,et al. Inhomogeneous coulomb fluid. A functional integral approach , 1988 .
[2] J. DeRouchey,et al. Cation charge dependence of the forces driving DNA assembly. , 2010, Biophysical journal.
[3] A. Gambassi,et al. Electrostatic interactions in critical solvents , 2011, 1104.5703.
[4] F. Solis,et al. Electrostatic-driven pattern formation in fibers, nanotubes and pores , 2011 .
[5] Phil Attard,et al. Electrolytes and the Electric Double Layer , 2007 .
[6] R. Kjellander,et al. Charge inversion in electric double layers and effects of different sizes for counterions and coions , 1998 .
[7] B. Lin,et al. Tuning ion correlations at an electrified soft interface , 2012, Proceedings of the National Academy of Sciences.
[8] D. A. Mcquarrie,et al. On the theory of ionic solutions. , 1975, Biophysical journal.
[9] Understanding swollen–collapsed and re-entrant transitions in polyelectrolyte nanogels by a modified Donnan theory , 2012 .
[10] Flexible linear polyelectrolytes in multivalent salt solutions: Solubility conditions , 2000, cond-mat/0003320.
[11] J. F. van der Veen,et al. Anisotropic pair correlations and structure factors of confined hard-sphere fluids: an experimental and theoretical study. , 2012, Physical review letters.
[12] R. Kjellander,et al. A study of anisotropic pair distribution theories for Lennard-Jones fluids in narrow slits , 1990 .
[13] Douglas J. Tobias,et al. Ions at the Air/Water Interface , 2002 .
[14] S. Dietrich,et al. Direct measurement of critical Casimir forces , 2008, Nature.
[15] B. Ninham,et al. Electrostatic potential between surfaces bearing ionizable groups in ionic equilibrium with physiologic saline solution. , 1971, Journal of theoretical biology.
[16] J. Lebowitz,et al. An exact formula for the contact value of the density profile of a system of charged hard spheres near a charged wall , 1979 .
[17] M. Olvera de la Cruz,et al. Precipitation of DNA by polyamines: a polyelectrolyte behavior. , 1998, Biophysical journal.
[18] Henri Orland,et al. Beyond Poisson-Boltzmann: Fluctuation effects and correlation functions , 2000 .
[19] Kai Zhang,et al. Polynucleotide adsorption to negatively charged surfaces in divalent salt solutions. , 2006, Biophysical Journal.
[20] Monica Olvera de la Cruz,et al. Effects of the ionic size-asymmetry around a charged nanoparticle: unequal charge neutralization and electrostatic screening , 2010 .
[21] Erik L. G. Wernersson,et al. Charge Inversion and Ion−Ion Correlation Effects at the Mercury/Aqueous MgSO4 Interface: Toward the Solution of a Long-Standing Issue , 2010 .
[22] R. Netz,et al. Effective interaction between two ion-adsorbing plates: Hofmeister series and salting-in/salting-out phase diagrams from a global mean-field analysis. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[23] H. Orland,et al. Variational charge renormalization in charged systems , 2002, The European physical journal. E, Soft matter.
[24] M. O. Cruz. Electrostatic control of self-organization: the role of charge gradients in heterogeneous media , 2008 .
[25] C. Mirkin,et al. Local Ionic Environment around Polyvalent Nucleic Acid-Functionalized Nanoparticles , 2011 .
[26] H. V. Grünberg,et al. Gas-liquid phase coexistence in colloidal suspensions? , 2001 .
[27] Barry W. Ninham,et al. On Progress in Forces Since the DLVO Theory , 1999 .
[28] M. Heuberger,et al. Hydrated-ion ordering in electrical double layers. , 2012, Physical chemistry chemical physics : PCCP.
[29] J. Dzubiella,et al. Nonequilibrium sedimentation of colloids on the particle scale. , 2007, Physical review letters.
[30] S. Marčelja,et al. Correlation and image charge effects in electric double layers , 1984 .
[31] V. Bloomfield,et al. Macroion Attraction Due to Electrostatic Correlation between Screening Counterions. 1. Mobile Surface-Adsorbed Ions and Diffuse Ion Cloud , 1996 .
[32] J. Klein,et al. Long-range attraction between charge-mosaic surfaces across water. , 2006, Physical review letters.
[33] Accidental deviations of density and opalescence at the critical point of a single substance , 2010 .
[34] F. Solis,et al. Spontaneous chirality via long-range electrostatic forces. , 2007, Physical review letters.
[35] David M. Kaz,et al. Physical ageing of the contact line on colloidal particles at liquid interfaces. , 2012, Nature materials.
[36] Alexei A Kornyshev,et al. Double-layer in ionic liquids: paradigm change? , 2007, The journal of physical chemistry. B.
[37] J. Zwanikken. Moderately Coupled Charged Fluids Near Dielectric Interfaces and in Confinement , 2014 .
[38] M. O. D. L. Cruz,et al. Ion condensation in salt‐free dilute polyelectrolyte solutions , 1995 .
[39] M. O. D. L. Cruz,et al. Precipitation of highly charged polyelectrolyte solutions in the presence of multivalent salts , 1995 .
[40] R. Evans. The nature of the liquid-vapour interface and other topics in the statistical mechanics of non-uniform, classical fluids , 1979 .
[41] Collapse of flexible polyelectrolytes in multivalent salt solutions , 1999, cond-mat/9908084.
[42] M. Dijkstra,et al. Ion association in low-polarity solvents: comparisons between theory, simulation, and experiment , 2010, 1109.4767.
[43] M. Olvera de la Cruz,et al. A practical integral equation for the structure and thermodynamics of hard sphere Coulomb fluids. , 2011, The Journal of chemical physics.
[44] D. Chan,et al. Correlations in inhomogeneous Coulomb systems , 1984 .
[45] E. Matijević,et al. Colloid and surface properties of clay suspensions. III. Stability of montmorillonite and kaolinite , 1976 .
[46] K. Ng. Hypernetted chain solutions for the classical one‐component plasma up to Γ=7000 , 1974 .
[47] D. Roberts,et al. On the attraction between two perfectly conducting plates , 2011 .
[48] Pedro Tarazona,et al. Dynamic density functional theory of fluids , 1999 .
[49] Clemens Bechinger,et al. Like-charge attraction in confinement: myth or truth? , 2006, Soft matter.
[50] S. Marčelja,et al. Charge reversal seen in electrical double layer interaction of surfaces immersed in 2:1 calcium electrolyte , 1993 .
[51] Hartmut Löwen,et al. Fundamental-measure free-energy density functional for hard spheres: Dimensional crossover and freezing , 1997 .
[52] D. Dean,et al. Electrostatics of soft and disordered matter , 2014 .
[53] Willy Wriggers,et al. Like-charge attraction between polyelectrolytes induced by counterion charge density waves , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[54] S. Marčelja,et al. Inhomogeneous Coulomb fluids with image interactions between planar surfaces. I , 1985 .
[55] I. R. Mcdonald,et al. Theory of simple liquids , 1998 .
[56] R. Kjellander,et al. Ion-ion correlations in electric double layers from Monte Carlo simulations and integral equation calculations Part 2. Case of added salt , 1997 .
[57] M. Dijkstra,et al. Computer simulations of the restricted primitive model at very low temperature and density , 2009, Journal of physics. Condensed matter : an Institute of Physics journal.
[58] M. Medina-Noyola,et al. General nonequilibrium theory of colloid dynamics. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[59] J. Springer,et al. Integral equation solutions for the classical electron gas , 1973 .
[60] R. van Roij,et al. Charged colloidal particles and small mobile ions near the oil-water interface: destruction of colloidal double layer and ionic charge separation. , 2007, Physical review letters.
[61] M. Medina-Noyola,et al. Aging of a homogeneously quenched colloidal glass-forming liquid. , 2010, Physical review. E, Statistical, nonlinear, and soft matter physics.
[62] G. Torrie,et al. Statistical mechanics of dense ionized matter. VII. Equation of state and phase separation of ionic mixtures in a uniform background , 1977 .