
Electrochemically Enabled Sustainability : Devices, Materials and Mechanisms for Energy Conversion
[Book Description]
Electrochemically Enabled SustainabilityMechanisms for Energy Conversion covers topics related to current research in electrochemical power sources, highlighting some of the latest concepts in electrochemical conversion for sustainability. The book examines the most recent and innovative technologies employed in battery and fuel cell technology. It introduces the fundamental concepts applied to these electrochemical power sources and provides in-depth discussion on the materials, design, and performance of these devices. Written by internationally acclaimed experts, the chapters illustrate how key technologies for sustainability are enabled by electrochemical conversion. Topics include the reduction of carbon dioxide to resolve issues of carbon capture, energy storage, and generation of portable fuel; turning waste into energy using microbial fuel cells; the promise of vanadium redox flow batteries for massive energy storage; and improved performance of hybrid devices.The book addresses numerous aspects of lithium-type batteries for vehicle propulsion and energy storage, presenting a broad range of lithium batteries, and considering nano-structuring issues, layered-structure materials, and hierarchical structure. This book provides timely coverage of critical issues in emerging and conventional technologies, presenting a wide range of electrochemical devices, related materials, and operation mechanisms. It stimulates an appreciation for the novelty of these electrochemical power sources and offers a projection of future integration of these devices in practice.
[Table of Contents]
Preface vii
Editors ix
Contributors xi
1 Electroreduction of Carbon Dioxide 1 (54)
Daniel A. Lowy
Maria Jitaru
2 Microbial Fuel Cells and Other 55 (66)
Bio-Electrochemical Conversion Devices
Shaoan Cheng
Weifeng Liu
3 Lithium Batteries: Status and Future 121(42)
Bruno Scrosati
Jusef Hassoun
4 Hollow Mesoporous Carbon with 163(28)
Hierarchical Nanoarchitecture in
Electrochemical Energy Storage and
Conversion
Min-Sik Kim
Dae-Soo Yang
Min Young Song
Jung Ho Kim
Jong-Sung Yu
5 Layer-Structured Cathode Materials for 191(32)
Energy Storage
Bohang Song
Man On Lai
Li Lu
6 First-Principles Approach for Cathode 223(32)
Design and Characterisation
Dong-Hwa Seo
Inchul Park
Kisuk Kang
7 Advanced Batteries and Improvements in 255(66)
Electrode Materials
Ashok Kumar Shukla
Vedam Ganesh Kumar
Musuwathi Krishnamoorthy Ravikumar
8 Lead-Carbon Hybrid Ultracapacitors and 321(26)
Their Applications
Ashok Kumar Shukla
Anjan Banerjee
Musuwathi Krishnamoorthy Ravikumar
9 Vanadium Flow Batteries: From Materials 347(48)
to Large-Scale Prototypes
Huamin Zhang
10 Physical Properties of Negative 395(34)
Half-Cell Electrolytes in the Vanadium
Redox Flow Battery
Asem Mousa
Maria Skyllas-Kazacos
11 pH Differential Power Sources with 429(40)
Electrochemical Neutralisation
Huanqiao Li
Chi-Ying Vanessa Li
Guo-Ming Weng
Kwong-Yu Chan
Index 469