Recent Advances in Ceramic Nanocomposites: Synthesis, Characterization and Applications consolidates the scattered literature on the synthesis, processing, characterization and applications of ceramic nanocomposites into a single, up-to-date reference. It explains the enhanced physical and chemical properties that make these materials suitable for electronics, energy, biomedical, chemical and aerospace uses, and reflects the rapid progress of the past decade. Coverage spans preparation routes such as sol-gel techniques, injection moulding and dry pressing alongside newer methods, giving researchers a coherent account of how structure and processing govern performance across this fast-moving field.
Dedicated chapters examine optical, magnetic, mechanical, thermal and rheological behaviour and applications including supercapacitors, batteries, fuel and solar cells, hydrogen storage, gas sensing, water purification, tissue engineering, drug delivery and corrosion protection, with distinctive sections on 3D printing and molecular dynamics modelling. It is intended for researchers, industry professionals and postgraduate students in nanoscience and materials science.
- Comprehensive, up-to-date coverage of the synthesis, properties and applications of ceramic nanocomposites, reflecting advances of the past decade
- Distinctive chapters on 3D printing, modelling and molecular dynamic simulations not found in competing titles
- Broad applications coverage spanning energy storage, water purification, gas sensing, corrosion protection, thermal insulation, photocatalysis and biomedicine
- Integration of practical examples and real-world case studies from energy, microelectronics and medical fields
- Reviewed by expert academics as the most up-to-date international reference of its kind, moving from fundamentals through to advanced applications