This book overviews the latest progress in waste energy harvesting technologies, with specific focusing on waste thermal mechanical energies. Waste mechanical energy harvesting technologies use the piezoelectric (ferroelectric) effect with ferroelectric materials and nanogenerators. Thermal energy harvesting technologies use the thermoelectric effect, the pyroelectric effect and storage through phase change materials. The book aims to strengthen the syllabus in energy, materials and physics and is well suitable for students and professionals in the fields.
Waste Energy Harvesting overviews the latest progress in waste energy harvesting technologies, with specific focusing on waste thermal mechanical energies. Thermal energy harvesting technologies include thermoelectric effect, storage through phase change materials and pyroelectric effect. Waste mechanical energy harvesting technologies include piezoelectric (ferroelectric) effect with ferroelectric materials and nanogenerators. The book aims to strengthen the syllabus in energy, materials and physics and is well suitable for students and professionals in the fields.
Presents the latest progress in waste energy harvesting technology Multidisciplinary field combining energy, materials and physics Special chapter focusing on nanogenerators Includes supplementary material: sn.pub/extras
Ling Bing Kong
Nanogenerators Phase Change Materials Piezoelectric Devices Pyroelectric Effect Pyroelectric Materials Thermal Storage Thermoelectric Effect Thermoelectric FIgure of Merit