Sulfide and Selenide Based Materials for Emerging Applications | Sustainable Energy Harvesting and Storage Technology
Language: English
Published by Elsevier Inc, 2022
- Softcover
- New



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Sulfide and Selenide Based Materials for Emerging Applications | Sustainable Energy Harvesting and Storage Technology | Goutam Kumar Dalapati (u. a.) | Taschenbuch | Einband - fest (Hardcover) | Englisch | 2022 | Elsevier Inc | EAN 9780323998604 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu.
Seller Inventory # 120820437
- Title
- Sulfide and Selenide Based Materials for Emerging Applications | Sustainable Energy Harvesting and Storage Technology
- Author
- Goutam Kumar Dalapati (u. a.)
- Publisher
- Elsevier Inc
- Publication year
- 2022
- Condition
- Neu
- Binding
- Taschenbuch
- Language
- English
- ISBN 10
- 0323998607
- ISBN 13
- 9780323998604
- Item weight
- 1,057 grams
- Dimensions
- 229 x 152 x 41 mm
- Seller catalogs
- Bücher
Sulfide and Selenide-Based Materials for Emerging Applications explores a materials and device-based approach to the transition to low-cost sustainable thin film photovoltaic devices and energy storage systems.
Part 1 examines recent advances in renewable technologies and materials for sustainable development, as well as photovoltaic energy storage devices. Part 2 discusses thin film solar cells with earth abundant materials, highlighting the power conversion efficiency of the kesterite-based solar cells. Kesterite film technology including different synthesis and doping method designs are also discussed, along with emerging sulfide semiconductors with potential in thin film photovoltaics/flexible devices. In Part 3 sulfur- and selenides-based materials for thermoelectric applications are explored. Part 4 covers chalcogenide semiconductors with applications in electrochemical water splitting for green hydrogen generation and oxygen generation, as well as the latest research on layered 2D transition metal chalcogenides for electrochemical water splitting. To conclude, part 5 discusses recent developments of storage technologies such as Li-S batteries, sulfide-based supercapacitors and metal-ion batteries, and the development of 3D printing sulfides/selenides for energy conversion and storage.
This book is a useful resource for those involved in green energy technology and decarbonization and is designed for a broad audience, from students to experienced scientists.
- Discusses the emerging sulfide/selenide based thin film absorber materials and their deposition methods
- Previews device engineering techniques that have been developed to enhance the power conversion efficiency and lifetime of sulfide/selenide based thin film solar cells
- Provides an update on what low cost sulfide/selenide based electro-catalysts have become available and the comparison of their performance vs. noble metal catalysts
"Synopsis" may belong to another edition of this title.
About the Author
Dr. Terence Wong obtained his BA and PhD degrees in electrical engineering from the University of Cambridge in 1987 and 1992 respectively. He is an associate professor at the School of electrical & electronic engineering of Nanyang Technological University
(NTU). From 2015-2020, he served as program lead for the joint MSc Green Electronics program. Before joining NTU, he was lecturer at the Department of electronic engineering at the Chinese University of Hong Kong. Dr. Wong’s research specialization is in semiconductor materials and devices for photovoltaics, displays and CMOS. Since 2015, his main research focus has been on the fabrication and characterization of sulfide based kesterite thin film solar cells. The research effort includes dopant incorporation into the CZTS and the development of novel ultrathin intermediate layers that act as a barrier between the molybdenum back contact and the CZTS absorber layer. From 2010-2015, he was working on organic bulk heterojunction solar cells enhanced by core-shell plasmonic metallic nanoparticles (nanorods and nanospheres with silica shell). He has also worked on the development of all printed flexible thick film hybrid AC electroluminescent devices using organic dyes as a downshifting layer. An AC powered warm white sheet light source was demonstrated in 2017 in SID IDW. Dr. Wong has published 84 journal articles and 75 conference proceedings/abstracts and is the sole author of an e-book on semiconductor strain metrology. He is senior member of IEEE, SPIE and a chartered physicist.
Dr.Subrata Kundu had received his Ph.D from the Indian Institute of Technology, Kharagpur, India in early 2005. Then he moved to University of Nebraska, Lincoln, USA and later Texas A&M University, USA as a post-doctoral research work (from 2005 to
2010). He is working in the field of Materials Chemistry mainly emphasized in size & shape selective nanomaterials synthesis, DNA based nanomaterials self-assembly, Nano fibers by electrospinning; application of nanoparticles in catalysis, analytical & environmental chemistry, Surface Enhanced Raman Scattering studies (SERS) and various energy related fields such as Thermoelectric Materials, Supercapacitors, electrochemical water splitting such as oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) and dye sensitized solar cells ( DSSCs). He has received several awards and holding editorial board of few journals including ‘Scientific Reports’ from Nature publishers. Dr. Kundu has published more than 190+ research publications in reputed international journals and having google scholar citations more than 11000+. He is currently holding positions of Principal Scientist at CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi, India. Dr. Kundu and his coworkers are now working in the forefront area of Material Science with applications mainly focused on energy, environment and catalysis
Dr. Amit Kumar Chakraborty is currently a Professor of Physics at the National Institute of Technology (NIT), Durgapur, an institute of national importance under Ministry of Education, Govt. of India and is also the Professor-in-Charge of the Centre of Excellence in Advanced Materials at NIT Durgapur. He had worked as a Post-Doctoral Scientist at the Laboratory for Mechanical Systems Engineering at EMPA, Swiss Federal Laboratories for Materials Science & Technology, Duebendorf, Switzerland during 2008-2010, and as a Research Associate at the Department of Chemistry, Durham University, United Kingdom during
2005-2008 before joining NIT Durgapur as an Associate Professor in August 2010. Dr. Chakraborty received his Ph.D. in the field of experimental nanoscience (of carbon nanostructures) in 2006 from the School of Physics & Astronomy, University of
Nottingham, after receiving a scholarship from the Engineering & Physical Sciences Research Council (EPSRC) of United Kingdom. His recent research interest concerns with the synthesis and application of nanomaterials (oxides, sulphides and their composites with carbon) for sustainable applications such as renewable energy technologies (supercapacitors, batteries, DSSC), clean water, and sensors.
Dr.Siarhei Zhuk, born in Belarus, received his Ph.D. degree in Electrical and Electronic Engineering from Nanyang Technological University in 2020. His Ph.D. thesis is about cation substitution in the absorber layer and back interface engineering of pure sulphide kesterite thin film solar cells. His key research interests include synthesis and characterization of novel sulphide and nitride semiconducting materials, smart coatings and photocathodes for photocatalytic water splitting.
"About the title" may belong to another edition of this title.
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