Two-Dimensional Inorganic Nanomaterials for Conductive Polymer Nanocomposites
No Customer Reviews
Functional, flexible and lightweight products are in high demand for modern technologies ranging from microelectronics to energy storage devices. The majority of polymers are thermal and electrical insulators, which hinder their use in these applications. The conductivity of polymers can be significantly enhanced by the incorporation of conducting inorganic nanoparticles. However, this relies not only on the structure and function of the inorganic particles, but is highly determined by the morphology and dispersion of the nanoparticles, interfacial interactions and fabrication technologies of the composites. This book highlights the synthesis, chemistry and applications of two-dimensional (2D) inorganic nanoplatelets in polymer nanocomposites. Chapters cover technical challenges, such as surface functionalisation, compatibilization, interfacial interaction, dispersion, and manufacturing technologies of the polymer nanocomposites. The book also discusses the applications of these polymer nanocomposites in electronics and energy storage. With contributions from global experts, the book provides a much-needed overview of the field, giving advanced undergraduates, postgraduates and other researchers with a convenient introduction to the topic.
Format:Hardcover
Language:English
ISBN:1788018435
ISBN13:9781788018432
Release Date:June 2021
Publisher:Royal Society of Chemistry
Length:279 Pages
Weight:1.30 lbs.
Dimensions:0.9" x 6.2" x 9.3"
Recommended
Format: Hardcover
Condition: New
$137.02
Save $2.98!
List Price $140.00
On Backorder
If the item is not restocked at the end of 90 days, we will cancel your backorder and issue you a refund.
ThriftBooks sells millions of used books at the lowest
everyday prices. We personally assess every book's quality and offer rare, out-of-print treasures. We
deliver the joy of reading in recyclable packaging with free standard shipping on US orders over $15.
ThriftBooks.com. Read more. Spend less.