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Full Description
This book reviews the latest research, development, and future potential of polyimides and green polymer chemistry. It combines the major interdisciplinary research in this area. Polymers with imidic structure, known as polyimides, are widely investigated owing to their practical implications in numerous industrial sectors. The book explains why polyimides offer versatility unparalleled in comparison to most other classes of macromolecules. In addition, developments in green polymer chemistry in this area have been stimulated by health and environmental concerns, interest in sustainability, desire to decrease the dependence on petroleum, and opportunities to design and produce "green" products and processes. Major advances include new uses of green processing methodologies, and green polymeric products.
Imidic Polymers and Green Polymer Chemistry: New Technology and Developments in Process and Product is targeted to scientists, engineers, and students who are involved or interested in green polymer chemistry and imidic polymers. This book will serve as a valuable reference for those with an interest in synthesis of polyimides and the chemistry and physical chemistry of polyimide compounds.
Contents
1. Aromatic-Alicyclic Polyimides: From Basic Aspects towards High Technologies 2. Polyimides with Bulky Groups: Synthesis, Characterization, and Physical Properties 3. The Thermal Cis-Trans Isomerization of Azopolyimides in the Solid State 4. From Insulating to Conducting Polyimides 5. Molecular Modeling of Imidic Polymers with Advanced Physico-Chemical Properties 6. Patterning Polyimide Films at Nanoscale Using Dynamic Plowing Lithography (DPL) 7. Polyimide Materials for Transistors and Biosensors Manufacturing 8. Natural Fibers; Modifications and Enhancements in Applications 9. Polyethylene Wax: Uses, Characterization, and Identification 10. Supercapacitor: An Efficient Approach for Energy Storage 11. Green Perspectives of Imides Toward Polymeric Membranes 12. Dynamic Molecular Phenomena in Polyimides Investigated by Dynamic Mechanical Analysis