Nanotechnology in Advanced Electrochemical Power Sources
Editat de S. R. S. Prabaharan, M. Siluvai Michaelen Limba Engleză Hardback – 24 oct 2014
This book outlines the state of the art of nanoscale aspects of advanced energy storage devices, such as lithium-ion batteries, including microbatteries and electrochemical supercapacitors. It focuses on various fundamental issues related to device performance of various positive and negative electrode materials, with special reference to their nanoscale advantages. It also includes fundamentals and processing techniques with regard to synthesis, characterization, physical, and electrochemical properties, and applications of nanoscale materials pertaining to advanced electrochemical power sources. A variety of advanced nanomaterials, such as transition metal oxides, phosphates, silicates, and conversion electrodes, together with some special nanomaterials such as carbon nanotubes, nanorods, and mesoporous carbons are discussed by many notable authorities in the field.
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Specificații
ISBN-13: 9789814241434
ISBN-10: 9814241431
Pagini: 380
Ilustrații: 144 black & white illustrations, 17 colour illustrations
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.66 kg
Ediția:1
Editura: Jenny Stanford Publishing
Colecția Jenny Stanford Publishing
ISBN-10: 9814241431
Pagini: 380
Ilustrații: 144 black & white illustrations, 17 colour illustrations
Dimensiuni: 152 x 229 x 26 mm
Greutate: 0.66 kg
Ediția:1
Editura: Jenny Stanford Publishing
Colecția Jenny Stanford Publishing
Public țintă
Academic and PostgraduateNotă biografică
S. R. S. Prabaharan is a professor and program chair (embedded system) in the School of Electronics Engineering (SENSE), VIT University, Chennai campus, India, since January 2013. He received his PhD in solid state devices in 1992. His immediate past appointment was with Manipal International University, Malaysia, where he was heading the electrical and electronics engineering programme and served as a full professor. Prior to this appointment, he served a long tenure with the University of Nottingham Malaysia/UK campuses under joint appointments as a professor and the head of the Power and Energy Research Division. He has published over 75 papers in high-impact journals and over 200 conference proceedings. He has several international patents (USA and Japan) to his credit. He is known for his notable research in areas of Li-ion batteries, supercapacitors, and advanced power solutions for electronic gadgets.
M. S. Michael is an assistant professor in the Department of Chemistry, SSN College of Engineering, Anna University, India. She received her PhD in 1996 in the field of corrosion from Madurai Kamaraj University, India. She also worked as a research fellow in the Central Electrochemical Research Institute (CECRI), a premier national laboratory in India. She then continued her post-doctoral fellowship at the Universiti Malaya, Multimedia University, Malaysia, and Université Pierre et Marie Curie, France, developing lithium-ion batteries. Dr. Michael has published more than 40 international peer-reviewed journal articles and has a few international patents to her credit. She has served on advisory boards and delivered invited talks in international conferences. Her expertise includes corrosion aspects of intermetallic alloys, hybrid supercapacitors, nanomaterials, lithium batteries, and Li–air batteries.
M. S. Michael is an assistant professor in the Department of Chemistry, SSN College of Engineering, Anna University, India. She received her PhD in 1996 in the field of corrosion from Madurai Kamaraj University, India. She also worked as a research fellow in the Central Electrochemical Research Institute (CECRI), a premier national laboratory in India. She then continued her post-doctoral fellowship at the Universiti Malaya, Multimedia University, Malaysia, and Université Pierre et Marie Curie, France, developing lithium-ion batteries. Dr. Michael has published more than 40 international peer-reviewed journal articles and has a few international patents to her credit. She has served on advisory boards and delivered invited talks in international conferences. Her expertise includes corrosion aspects of intermetallic alloys, hybrid supercapacitors, nanomaterials, lithium batteries, and Li–air batteries.
Cuprins
Senior Authors, Foreword, Preface, 1 Redox Reaction in Size-Controlled LixFePO4, 2 Orthosilicate-Based Cathode Materials for Lithium-Ion Batteries, 3 Nanoscale Conversion Materials for Electrochemical Energy Storage, 4 Nanoengineered Lithium–Air Secondary Batteries: Fundamental Understanding and the Current Status of Development, 5 Nano Anode Materials for Lithium-Ion Batteries, 6 Interface between Transition Metal Oxides–Based Electrodes and Lithium Salts Electrolytes: A Physicochemical Approach, 7 Electron Spin Resonance Studies of Lithium-Ion Battery Materials, 8 Graphene and Graphene-Based Nanocomposites for Electrochemical Energy Storage, 9 Carbon Nanotubes for Energy Storage Application, 10 Manganese Oxide/Carbon Nanotube Nanocomposites for Electrochemical Energy Storage Applications, 11 Manganese Oxides for Supercapacitors, 12 High-Voltage Electrode/Electrolyte Interface in ECs and Hybrid Capacitors, Index
Descriere
This book reflects a state-of-the-art understanding of electrochemical power sources employing positive and negative electrode materials at nanoscale, including Lithium-ion batteries, microbatteries, and electrochemical supercapacitors. Featuring contributions based on the recent research outcomes of leading experts in the field, the text focuses on the fundamental apects of energy storage device performance, with a special emphasis on nanoscale advantages. The editors include current processing techniques as well as the synthesis, characterization, physical and electrochemical properties, and applications of nanoscale materials related to advanced electrochemical power sources.