Stimuli-Responsive Interfaces: Fabrication and Application

前表紙
Takeshi Kawai, Mineo Hashizume
Springer, 2016/11/17 - 313 ページ
This book introduces recent progress in stimuli-responsive interfaces constructed on colloidal materials such as micelles and vesicles and on solid material surfaces. There is discussion of the effect of stimuli such as light, heat, pH, and electric field on changes in the morphology of the molecules at the interfaces and that of colloidal materials. The changes in the properties, such as gelation ability, dispersibility, and emulsification ability, of the resultant bulk materials containing these colloidal materials or those of the solid material are also covered. In addition, design criteria for high sensitivity, quick responsiveness, and high reversibility are presented. In each author’s original system, the correlations between molecular-level responses and bulk functional responses are described as well. This book serves as an excellent guide to designing and fabricating novel, functional, eco-friendly stimuli-responsive interfaces and related materials.
 

目次

1 Introduction
2
2 PhotoInduced Demulsification
5
3 StimuliResponsible Viscoelastic Surfactant Solutions
18
4 StimuliResponsive ChargeFree Reverse Micelles in NonAqueous Media
37
5 StimuliResponsive SelfHealing Viscoelastic Gels
63
6 StimuliResponsive and SoftTemplate Functions of Novel Amphiphiles Having Amidoamine Groups
84
7 Photoresponsive Gold Clusters
109
8 StimuliResponsive Structure Control of SelfAssembled Gold Nanoparticles
126
10 Langmuir and LangmuirBlodgett Monolayers Having PhotoResponsibilities
178
11 StimuliResponsive Polymer Micelles
187
12 Design of Biomimetic Interfaces at the Dendrimer Periphery and Their Applications
209
13 StimuliResponsive Polymer Materials for Creation of Biointerfaces
229
14 StimuliResponsive Adhesion for 3D Fabrication of Hydrogels
254
15 MediaResponsive Swelling and Material Release Properties of Polysaccharide Composite Films
269
16 StimuliResponsive Thin Films Composed of Photochromic Compounds to Construct Surface Relief
280
17 Electric FieldInduced Arrangement of Colloidal Materials in Microfluidic Devices
297

9 Supramolecular Metal Complex Nanoarchitectures via Various Amphiphiles
147

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著者について (2016)

Takeshi KAWAI, Professor, Tokyo University of Science, Shinjuku-ku, Japan
Mineo HASHIZUME, Associate Professor, Tokyo University of Science, Shinjuku-ku, Japan

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