Functional Hybrid Materials

1. Edition December 2003
XVII, 417 Pages, Hardcover
212 Pictures (45 Colored Figures)
12 tables
Practical Approach Book
Short Description
Here, a team of highly renowned experts gives an in-depth overview of the many fascinating facets of this field, illustrating the superiority of well-designed hybrid materials over conventional materials, and their potential applications as structural or functional materials in various fields.
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Functional Hybrid Materials consist of both organic and inorganic components, assembled for the purpose of generating desirable properties and functionalities. The aim is twofold: to bring out or enhance advantageous chemical, electrochemical, magnetic or electronic characteristics and at the same time to reduce or wholly suppress undesirable properties or effects. Another target is the creation of entirely new material behavior.
The vast number of hybrid material components available has opened up a wide and diversified field of fascinating research. In this book, a team of highly renowned experts gives an in-depth overview, illustrating the superiority of well-designed hybrid materials and their potential applications.
Organic-Inorganic Materials - From Intercalation Chemistry to Devices
Bridged Polysilsesquioxanes - Molecular-Engineering Nanostructured Hybrid Organic-Inorganic Materials
Porous Inorganic-Organic Hybrid Materials
Optical Properties of Functional Hybrid Organic-Inorganic Nanocomposites
Electrochemistry of Sol-Gel Derived Hybrid Materials
Multifunctional Hybrid Materials Based on Conducting Organic Polymers - Nanocomposite Systems with Photo-Electro-Ionic Properties and Applications
Layered Organic-Inorganic Materials - A Way Towards Controllable Magnetism
Building Multifunctionality in Hybrid Materials
Hybrid Organic-Inorganic Electronics
Bioactive Sol-Gel Hybrids
Rick C. Schroden, The Dow Chemical Company, Midland, Advanced Materials, September3, 2004