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Title Handbook of stimuli-responsive materials / edited by Marek W. Urban
Published Weinheim : Wiley-VCH, [2011]
©2011

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Description xvii, 278 pages : illustrations ; 25 cm
Contents Contents note continued: 10.5.Compounds Requiring a Cathodic Process -- 10.5.1.Aryldiazonium Salts -- 10.5.2.(Meth)acrylic Monomers -- 10.5.3.Iodide Derivatives -- 10.6.Conclusions -- References
Contents note continued: 2.3.4.Photoresponsive Polymers -- 2.4.Conclusions -- References -- 3.Self-Oscillating Gels as Stimuli-Responsive Materials / Victor V. Yashin -- 3.1.Introduction -- 3.2.Methodology -- 3.2.1.Continuum Equations -- 3.2.2.Formulation of the Gel Lattice Spring Model (gLSM) -- 3.2.3.Model Parameters and Correspondence between Simulations and Experiments -- 3.3.Results and Discussions -- 3.3.1.Effect of Confinement on the Dynamics of the BZ Gels -- 3.3.1.1.Linear Stability Analysis in Limiting Cases -- 3.3.1.2.Oscillations Induced by the Release of Confinement -- 3.3.1.3.Behavior of Partially Confined Samples -- 3.3.2.Response of the BZ Gels to Nonuniform Illumination -- 3.3.2.1.Modeling the Photosensitivity of the BZ Gels -- 3.3.2.2.Autonomous Motion toward the Dark Region -- 3.3.2.3.Light-Guided Motion along Complex Paths -- 3.4.Conclusions -- Acknowledgments -- References -- 4.Self-Repairing Polymeric Materials / Marek W. Urban -- 4.1.Introduction --
Contents note continued: 4.2.Damage and Repair Mechanisms in Polymers -- 4.2.1.Dimensions of Damages and Repairs -- 4.2.1.1.Angstrom-Level Repairs -- 4.2.1.2.Nanometer-Level Repairs -- 4.2.1.3.Micrometer-Level Repairs -- 4.2.1.4.Millimeter-Level Repairs -- 4.3.Summary -- References -- 5.Stimuli-Driven Assembly of Chromogenic Dye Molecules: a Versatile Approach for the Design of Responsive Polymers / Christoph Weder -- 5.1.Introduction -- 5.2.Excimer-Forming Sensor Molecules -- 5.3.Fluorescent Mechanochromic Sensors -- 5.4.Thermochromic Sensors -- 5.5.Chemical Sensing with Excimer-Forming Dyes -- 5.6.Summary and Outlook -- Acknowledgments -- References -- 6.Switchable Surface Approaches / Joerg Lahann -- 6.1.Introduction -- 6.2.Electroactive Materials -- 6.2.1.High-Density and Low-Density Self-Assembled Monolayers -- 6.2.2.Self-Assembled Monolayers with Hydroquinone Incorporation -- 6.3.Photoresponsive Materials -- 6.3.1.Molecules Containing Azobenzene Units --
Contents note continued: 6.3.2.Molecules Containing Spiropyran Units -- 6.3.3.Photoresponsive Shape-Memory Polymers -- 6.4.pH-Responsive Materials -- 6.4.1.pH-Switchable Surfaces Based on Self-Assembled Monolayers (SAMs) -- 6.4.2.pH-Switchable Surfaces Based on Polymer Brushes -- 6.5.Thermoresponsive Materials -- 6.5.1.Temperature-Dependent Switching Based on Poly(N-iso-propylacrylamide) (PNIPAAm) -- 6.5.2.Temperature-Dependent Switching in Polymer Brushes -- 6.5.3.Thermoresponsive Shape-Memory Polymers -- 6.6.Switchable Surfaces Based on Supramolecular Shuttles -- 6.6.1.Rotaxane Shuttles -- 6.6.2.Switches Based on Catenanes -- 6.7.Switchable Surfaces Comprising DNA and Peptide Monolayers -- 6.7.1.DNA-Based Surface Switches -- 6.7.2.Switches Based on Aptamers -- 6.7.3.Switches Based on Helical Peptides -- 6.7.4.Switchable Surfaces of Elastinlike Polypeptides (ELP) -- 6.8.Summary -- References --
Contents note continued: 7.Layer-by-Layer Self-Assembled Multilayer Stimuli-Responsive Polymeric Films / Lei Zhai -- 7.1.Introduction -- 7.2.Fabrication of Multilayer Polymer Coatings -- 7.3.Response of Multilayer Polymer Coatings to External Stimuli -- 7.3.1.Salt Concentration Change -- 7.3.2.pH Alternation -- 7.3.3.Temperature Variation -- 7.3.4.Light Radiation -- 7.3.5.Electrochemical Stimuli -- 7.3.6.Specific Molecular Interaction -- 7.4.Conclusion and Outlook -- References -- Further Reading -- 8.Photorefractive Polymers / Dhanya Ramachandran -- 8.1.Introduction -- 8.2.The Photorefractive Effect in Polymers -- 8.2.1.Charge Generation and Transport in Polymers -- 8.2.2.Electro-Optic Response in Polymers -- 8.2.3.Formation of Photorefractive Gratings -- 8.3.The Two-Beam Coupling Effect -- 8.4.High-Performance Photorefractive Polymers -- 8.4.1.Guest-Host Polymer Systems -- 8.4.2.Functionalized Polymer Systems -- 8.5.Experimental Techniques --
Contents note continued: 8.5.1.Photoconductivity and Electro-Optic Responses -- 8.5.2.Two-Beam Coupling -- 8.5.3.Diffraction Efficiency and Response Time -- 8.6.Conclusions -- References -- 9.Photochromic Responses in Polymer Matrices / Marek W. Urban -- 9.1.Introduction -- 9.2.Photochromic Polymeric Systems -- 9.2.1.Influence of Molecular Structures -- 9.2.2.Environmental Effects -- 9.2.3.Kinetics of Photoreactions -- 9.3.Photochromic Systems -- 9.3.1.Azobenzenes -- 9.3.2.Spiropyrans -- 9.3.3.Diarylethenes -- 9.3.4.Fulgides -- 9.4.Outlook of Photochromic Materials -- Acknowledgments -- References -- 10.Covalent Bonding of Functional Coatings on Conductive Materials: the Electrochemical Approach / Christine Jerome -- 10.1.Introduction -- 10.2.Electrodeposited Coatings -- 10.3.Electrografted Coatings -- 10.4.Compounds Requiring an Anodic Process -- 10.4.1.Aliphatic Primary Amines -- 10.4.2.Arylacetates -- 10.4.3.Primary Alcohols -- 10.4.4.Arylhydrazines --
Machine generated contents note: 1.Synthetic and Physicochemical Aspects of Advanced Stimuli-Responsive Polymers / Marek W. Urban -- 1.1.Introduction -- 1.2.Controlled Free Radical Polymerization of Stimuli-Responsive Polymers -- 1.3.Synthesis of Stimuli-Responsive Colloidal Dispersions -- 1.4.Summary -- References -- 2.Biological- and Field-Responsive Polymers: Expanding Potential in Smart Materials / Brent S. Sumerlin -- 2.1.Introduction -- 2.2.Biologically Responsive Polymer Systems -- 2.2.1.Glucose-Responsive Polymers -- 2.2.1.1.Glucose-Responsive Systems Based on Glucose-GOx -- 2.2.1.2.Glucose-Responsive Systems Based on ConA -- 2.2.1.3.Glucose-Responsive Systems Based on Boronic Acid-Diol Complexation -- 2.2.2.Enzyme-Responsive Polymers -- 2.2.3.Antigen-Responsive Polymers -- 2.2.4.Redox-/Thiol-Responsive Polymers -- 2.3.Field-Responsive Polymers -- 2.3.1.Electroresponsive Polymers -- 2.3.2.Magneto responsive Polymers -- 2.3.3.Ultrasound-Responsive Polymers --
Notes Formerly CIP. Uk
Bibliography Includes bibliographical references and index
Subject Materials.
Polymers.
Smart materials.
Author Urban, Marek W., 1953-
LC no. 2012357285
ISBN 3527327002 (hbk.)
9783527327003 (hbk.)