简介
This book provides an interdisciplinary overview of a new and broad class of materials under the unifying name Nanostructured Soft Matter. It covers materials ranging from short amphiphilic molecules to block copolymers, proteins, colloids and their composites, microemulsions and bio-inspired systems such as vesicles. The book considers several fundamental questions, including: how self-assembly of various soft materials with internal structure at the nanoscale can be understood, controlled and in future used in the newly emerging field of soft nanotechnology. The book offers readers a view on the subject from different perspectives, combining modern experimental approaches from physical chemistry and physics with various theoretical techniques from physics, mathematics and the most advanced computer modelling. It is the first book of this sort in the field. All chapters are written by leading international experts, bringing together experience from Canada, Germany, Great Britain, Japan, the Netherlands, Russia, Singapore, Spain and the USA. The book is oriented towards active researchers as well as undergraduate and graduate students.
目录
Front matter 3-265
Part I / Experimental Advances 3-44
Microemulsion Templating 45-97
Nanofabrication of Block Copolymer Bulk and Thin Films: Microdomain Structures as Templates 99-128
Characterization of Surfactant Water Systems by X-Ray Scattering and 2H NMR 129-158
Polyelectrolyte Diblock Copolymer Micelles: Small Angle Scattering Estimates of the Charge Ordering in the Coronal Layer 159-170
Structure and Shear-Induced Order in Blends of a Diblock Copolymer with the Corresponding Homopolyme 171-198
Electric Field Alignment of Diblock Copolymer Thin Films 199-229
Control of Block Copolymer Microdomain Orientation from Solution using Electric Fields: Governing Parameters and Mechanisms 231-265
Structure and Dynamics of Cylinder Forming Block Copolymers in Thin Films 269-433
Part II / Mathematical and Theoretical Approaches 269-299
Mathematical Description of Nanostructures with Minkowski Functionals 301-326
Scaling Theory of Polyelectrolyte and Polyampholyte Micelles 327-370
The Latest Development of the Weak Segregation Theory of Microphase Separation In Block Copolymers 371-393
Coarse-Grained Modeling of Mesophase Dynamics in Block Copolymers 395-433
Effective Interactions in Soft Materials 437-615
Part III / Computer Simulations 437-460
Ab-initio Coarse-Graining of Entangled Polymer Systems 461-493
Computer Simulations of Nano-Scale Phenomena Based on the Dynamic Density Functional Theories: Applications of SUSHI in the OCTA System 495-527
Monte Carlo Simulations of Nano-Confined Block Copolymers 529-554
Understanding Vesicles and Bio-Inspired Systems with Dissipative Particle Dynamics 555-585
Theoretical Study of Nanostructured Biopolymers Using Molecular Dynamics Simulations: A Practical Introduction 587-615
Understanding Liquid/Colloids Composites with Mesoscopic Simulations 617-628
Back matter Back matter
Part I / Experimental Advances 3-44
Microemulsion Templating 45-97
Nanofabrication of Block Copolymer Bulk and Thin Films: Microdomain Structures as Templates 99-128
Characterization of Surfactant Water Systems by X-Ray Scattering and 2H NMR 129-158
Polyelectrolyte Diblock Copolymer Micelles: Small Angle Scattering Estimates of the Charge Ordering in the Coronal Layer 159-170
Structure and Shear-Induced Order in Blends of a Diblock Copolymer with the Corresponding Homopolyme 171-198
Electric Field Alignment of Diblock Copolymer Thin Films 199-229
Control of Block Copolymer Microdomain Orientation from Solution using Electric Fields: Governing Parameters and Mechanisms 231-265
Structure and Dynamics of Cylinder Forming Block Copolymers in Thin Films 269-433
Part II / Mathematical and Theoretical Approaches 269-299
Mathematical Description of Nanostructures with Minkowski Functionals 301-326
Scaling Theory of Polyelectrolyte and Polyampholyte Micelles 327-370
The Latest Development of the Weak Segregation Theory of Microphase Separation In Block Copolymers 371-393
Coarse-Grained Modeling of Mesophase Dynamics in Block Copolymers 395-433
Effective Interactions in Soft Materials 437-615
Part III / Computer Simulations 437-460
Ab-initio Coarse-Graining of Entangled Polymer Systems 461-493
Computer Simulations of Nano-Scale Phenomena Based on the Dynamic Density Functional Theories: Applications of SUSHI in the OCTA System 495-527
Monte Carlo Simulations of Nano-Confined Block Copolymers 529-554
Understanding Vesicles and Bio-Inspired Systems with Dissipative Particle Dynamics 555-585
Theoretical Study of Nanostructured Biopolymers Using Molecular Dynamics Simulations: A Practical Introduction 587-615
Understanding Liquid/Colloids Composites with Mesoscopic Simulations 617-628
Back matter Back matter
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