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Advanced Lightweight Multifunctional Materials presents the current state-of-the-art on multifunctional materials research, focusing on different morphologies and their preparation and applications. The book emphasizes recent advances on these types of materials as well as their application. Chapters cover porous multifunctional materials, thermochromic and thermoelectric materials, shape memory materials, piezoelectric multifunctional materials, electrochromic and electrorheological, soft materials, magnetic and photochromic materials, and more. The book will be a valuable reference resource…mehr

Produktbeschreibung
Advanced Lightweight Multifunctional Materials presents the current state-of-the-art on multifunctional materials research, focusing on different morphologies and their preparation and applications. The book emphasizes recent advances on these types of materials as well as their application. Chapters cover porous multifunctional materials, thermochromic and thermoelectric materials, shape memory materials, piezoelectric multifunctional materials, electrochromic and electrorheological, soft materials, magnetic and photochromic materials, and more. The book will be a valuable reference resource for academic researchers and industrial engineers working in the design and manufacture of multifunctional materials, composites and nanocomposites.
Autorenporträt
Pedro Costa graduated in Physics and obtained his PhD degree in Materials Engineering at the University of Minho, Portugal in 2013. He is currently a researcher at the same university working in polymer-based composites for energy harvesting, sensors and actuator applications. He participates in several international conferences, has published in scientific journals and has one patent registered. His research interests are in the field of polymer-based smart material composites and their applications, including energy harvesting and generation.

Carlos M. Costa received his Ph.D. in Physics from the Science School of the University of Minho, where he currently works as an assistant researcher. His work is focused on the development of electroactive polymer based porous membranes, anode and cathode materials for energy storage applications with a particular focus on lithium-ion batteries, printed batteries. He has expertise in processing, characterization and optimization of sustainable polymers and polymer nanocomposites for sensors and actuators. He has published extensively in the fields of lightweight multifunctional materials and sustainable energy storage.