Electrostatics of Soft and Disordered Matter.

Recently, there has been a surge of activity to elucidate the behavior of highly charged soft matter and Coulomb fluids in general. Such systems are ubiquitous, especially in biological matter where the length scale and the strength of the interaction between highly charged biomolecules are governed...

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Bibliographic Details
Main Author: Dean, David S.
Other Authors: Dobnikar, Jure, Najʻī, ʻAlī, Podgornik, Rudolf
Format: eBook
Language:English
Published: Hoboken : Pan Stanford, 2014.
Subjects:
Online Access:Click for online access
Table of Contents:
  • Front Cover; Contents; Preface; Introduction; Chapter 1 Surprising Challenges; Chapter 2 A Field Theory Approach for Modeling Electrostatic Interactions in Soft Matter; Chapter 3 Extended Poisson- Boltzmann Descriptions of the Electrostatic Double Layer: Implications for Charged Particles at Interfaces; Chapter 4 Aspects of One- Dimensional Coulomb Gases; Chapter 5 Electrostatics in Electrolytes Expressed in an Exact Formalism Reminiscent of the Poisson- Boltzmann Picture; Chapter 6 Legendre Transforms for Electrostatic Energies.
  • Chapter 7 Ionic Liquids and Ionic Liquid + Solvent Mixtures, Studied by Classical Density Functional TheoryChapter 8 The Wigner Strong- Coupling Approach; Chapter 9 Moderately Coupled Charged Fluids Near Dielectric Interfaces and in Confinement; Chapter 10 Dielectric Profiles and Ion- Specific Effects at Aqueous Interfaces; Chapter 11 Hydration Repulsion between Polar Surfaces: An Atomistic Simulation Approach; Chapter 12 The Electrode- Ionic Liquid Interface: A Molecular Point of View; Chapter 13 Modeling Electrokinetics through Varying Length and Time Scales.
  • Chapter 14 Polarizable Surfaces: Weak and Strong Coupling RegimesChapter 15 Coarse- Grained Modeling of Charged Colloidal Suspensions: From Poisson- Boltzmann Theory to Effective Interactions; Chapter 16 Many- Body Interactions in Colloidal Suspensions; Chapter 17 Controlling the Fluid- Fluid Mixing- Demixing Phase Transition with Electric Fields; Chapter 18 Dynamic Electric Response of Charged Fibrous Virus (fd) Suspensions: Interactions of Charged Colloidal Rods in AC Electric Fields; Chapter 19 Statistical Thermodynamics of Supercapacitors and Blue Engines.
  • Chapter 20 Cluster Phases in Colloids and ProteinsChapter 21 Estimation of Solvation Electrostatic Free Energy of Biomolecular Systems by Numerical Solution of the Poisson- Boltzmann Equation; Chapter 22 Modeling DNA in Nanopores; Chapter 23 Mean- Field Electrostatics of Stiff Rod- Like Ions; Chapter 24 Physics of Counterion- Mediated Attractions between Double- Stranded DNAs; Chapter 25 Coulomb Interactions between Disordered Charge Distributions; Chapter 26 Short- Range Disorder and Electrostatic Interactions in Macromolecules.