Organic Thermoelectric Materials
Herausgeber: Lin, Zhiqun; He, Ming
Organic Thermoelectric Materials
Herausgeber: Lin, Zhiqun; He, Ming
- Gebundenes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
This book summarises the significant progress made in organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor.
Andere Kunden interessierten sich auch für
- Thermoelectric Materials and Devices232,99 €
- Materials Challenges255,99 €
- Mauro Feliziani (Professor, Electrical Engineering, University of LWireless Power Transfer for E-Mobility176,99 €
- Lithium-Ion Batteries250,99 €
- Steven SimElectric Utility Resource Planning77,99 €
- Performance Enhancement and Control of Photovoltaic Systems191,99 €
- Power Electronics Converters and Their Control for Renewable Energy Applications191,99 €
-
-
-
This book summarises the significant progress made in organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Energy and Environment Series
- Verlag: Royal Society of Chemistry
- Seitenzahl: 308
- Erscheinungstermin: 31. Oktober 2019
- Englisch
- Abmessung: 236mm x 160mm x 23mm
- Gewicht: 666g
- ISBN-13: 9781788014700
- ISBN-10: 1788014707
- Artikelnr.: 54852552
- Energy and Environment Series
- Verlag: Royal Society of Chemistry
- Seitenzahl: 308
- Erscheinungstermin: 31. Oktober 2019
- Englisch
- Abmessung: 236mm x 160mm x 23mm
- Gewicht: 666g
- ISBN-13: 9781788014700
- ISBN-10: 1788014707
- Artikelnr.: 54852552
Dr. Zhiqun Lin is currently Professor of Materials Science and Engineering at the Georgia Institute of Technology. He received his PhD degree in Polymer Science and Engineering from University of Massachusetts, Amherst in 2002. He did his postdoctoral research at University of Illinois at Urbana-Champaign. His research interests include polymer-based nanocomposites, block copolymers, conjugated polymers, quantum dots (rods, tetrapods and wires), functional nanocrystals (metallic, magnetic, semiconducting, upconversion and thermoelectric) of different architectures, solar cells (perovskite solar cells and dye sensitized solar cells), batteries, hydrogen generation, thermoelectric materials and devices, hierarchically structured and assembled materials, and surface and interfacial properties. He has published more than 220 peer reviewed journal articles (with an h-index of 61), 10 book chapters, and 4 books. Currently, he serves as an Associate Editor for Journal of Materials Chemistry A, and an editorial advisory board member for Nanoscale. He is a recipient of Frank J. Padden Jr. Award in Polymer Physics from American Physical Society, an NSF Career Award, a 3 M Non-Tenured Faculty Award, and an invited participant at the National Academy of Engineering's 2010 US Frontiers of Engineering Symposium. He became a Fellow of Royal Society of Chemistry in 2014 and a Japan Society for Promotion of Science (JSPS) Fellow in 2015. Dr. Ming He received his B.S. in Materials Science and Engineering from East China University of Science and Technology in 2005, and received his Ph.D. in Polymer Chemistry and Physics from Fudan University in 2011. He was a visiting student at Iowa State university (2009-2011). He worked as a Postdoctoral Fellow at Fudan University (2011-2013) and Georgia Institute of Technology (2013-2017). In July 2017, he became a Research Scientist at Georgia Institute of Technology. His research interests include conjugated polymers, organic-inorganic hybrid semiconductors, solar cells, and thermoelectricity.
Introduction
Thermoelectric Transport Theory in Organic Semiconductors
Synthesis of Organic Thermoelectric Materials
PEDOT-based Thermoelectrics
Carbon Based Thermoelectric Materials
Organic Hierarchical Thermoelectric Materials
Conducting Polymer-based Organic-Inorganic Thermoelectric Nanocomposites
Thermoelectric Materials by Organic Intercalation
Flexible Organic-based Thermoelectric Devices
Thermoelectric Transport Theory in Organic Semiconductors
Synthesis of Organic Thermoelectric Materials
PEDOT-based Thermoelectrics
Carbon Based Thermoelectric Materials
Organic Hierarchical Thermoelectric Materials
Conducting Polymer-based Organic-Inorganic Thermoelectric Nanocomposites
Thermoelectric Materials by Organic Intercalation
Flexible Organic-based Thermoelectric Devices
Introduction
Thermoelectric Transport Theory in Organic Semiconductors
Synthesis of Organic Thermoelectric Materials
PEDOT-based Thermoelectrics
Carbon Based Thermoelectric Materials
Organic Hierarchical Thermoelectric Materials
Conducting Polymer-based Organic-Inorganic Thermoelectric Nanocomposites
Thermoelectric Materials by Organic Intercalation
Flexible Organic-based Thermoelectric Devices
Thermoelectric Transport Theory in Organic Semiconductors
Synthesis of Organic Thermoelectric Materials
PEDOT-based Thermoelectrics
Carbon Based Thermoelectric Materials
Organic Hierarchical Thermoelectric Materials
Conducting Polymer-based Organic-Inorganic Thermoelectric Nanocomposites
Thermoelectric Materials by Organic Intercalation
Flexible Organic-based Thermoelectric Devices