Block Copolymer Nanocomposites

Nonfiction, Science & Nature, Technology, Textiles & Polymers, Material Science
Cover of the book Block Copolymer Nanocomposites by , Jenny Stanford Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9781315341187
Publisher: Jenny Stanford Publishing Publication: October 14, 2016
Imprint: Jenny Stanford Publishing Language: English
Author:
ISBN: 9781315341187
Publisher: Jenny Stanford Publishing
Publication: October 14, 2016
Imprint: Jenny Stanford Publishing
Language: English

This book provides a comprehensive overview of the synthesis and characterization of nanocomposites based on block copolymers. Because of the self-assembly capability of block copolymers for the generation of nanostructures, besides their ability to nanostructure thermosetting matrices such as epoxy and polyester, binary or ternary nanocomposites can be prepared with different nanofillers such as nanoparticles and carbon nanotubes.

The book starts with a review on nanocomposites based on block copolymers and nanoparticles synthesized with the use of surfactants, followed by a review on nanocomposites with metallic nanoparticles with polymer brushes and those with carbon nanotubes. A chapter is devoted to binary systems based on block copolymers and nanoparticles synthesized by sol-gel. A review on nanocomposites based on thermosetting matrices nanostructured with block copolymers (amphiphilic or chemically modified) is also presented for both epoxy and polyester resins. The work on ternary systems based on thermosetting matrices, block copolymers, and nanoparticles is presented next. The book concludes with a discussion on nanocomposites based on epoxy and block copolymers with azobenzene groups for optical purposes.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book provides a comprehensive overview of the synthesis and characterization of nanocomposites based on block copolymers. Because of the self-assembly capability of block copolymers for the generation of nanostructures, besides their ability to nanostructure thermosetting matrices such as epoxy and polyester, binary or ternary nanocomposites can be prepared with different nanofillers such as nanoparticles and carbon nanotubes.

The book starts with a review on nanocomposites based on block copolymers and nanoparticles synthesized with the use of surfactants, followed by a review on nanocomposites with metallic nanoparticles with polymer brushes and those with carbon nanotubes. A chapter is devoted to binary systems based on block copolymers and nanoparticles synthesized by sol-gel. A review on nanocomposites based on thermosetting matrices nanostructured with block copolymers (amphiphilic or chemically modified) is also presented for both epoxy and polyester resins. The work on ternary systems based on thermosetting matrices, block copolymers, and nanoparticles is presented next. The book concludes with a discussion on nanocomposites based on epoxy and block copolymers with azobenzene groups for optical purposes.

More books from Jenny Stanford Publishing

Cover of the book Nanomedicine in Cancer by
Cover of the book Handbook of Spintronic Semiconductors by
Cover of the book Handbook of Biopolymers by
Cover of the book Plasmonic Resonators by
Cover of the book The Microflow Cytometer by
Cover of the book Metamaterials Modelling and Design by
Cover of the book Tissue Phenomics: Profiling Cancer Patients for Treatment Decisions by
Cover of the book Advanced Nanodielectrics by
Cover of the book Handbook of Textile Effluent Remediation by
Cover of the book Transformation Wave Physics by
Cover of the book Multiscale Modeling in Nanophotonics by
Cover of the book Annotations to Quantum Statistical Mechanics by
Cover of the book The Nanotechnology Revolution by
Cover of the book Handbook of Low-Level Laser Therapy by
Cover of the book Lithium-Ion Batteries by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy