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Electrochemistry and Photo-electrochemistry at the Nanoscale
explores how nanotechnology and nanomaterials can be utilized in
the field of electrochemistry and photo-electrochemistry.
Fundamentals of nanoscale electrochemistry and
photo-electrochemistry f
Nanomaterials for Electrocatalysis provides an overview of the
different types of nanomaterials, design principles and synthesis
protocols used for electrocatalytic reactions. The book is divided
into four parts that thoroughly describe basic principles and
fundamental of electrocatalysis, different types of nanomaterials
used, and their electrocatalytic applications, limitations and
future perspectives. As electrochemical systems containing
nanomaterials, with relevance to experimental situation, yield
better results, this book highlights new information and findings.
Lithium-ion batteries are the most promising among the secondary
battery technologies, for providing high energy and high power
required for hybrid electric vehicles (HEV) and electric vehicles
(EV). Lithium-ion batteries consist of conventional graphite or
lithium titanate as anode and lithium transition metal-oxides as
cathode. A lithium salt dissolved in an aprotic solvent such as
ethylene carbonate and diethylene carbonate is used as electrolyte.
This rechargeable battery operates based on the principle of
electrochemical lithium insertion/re-insertion or
intercalation/de-intercalation during charging/discharging of the
battery. It is essential that both electrodes have layered
structure which should accept and release the lithium-ion. In
advanced lithium-ion battery technologies, other than layered
anodes are also considered. High cell voltage, high capacity as
well as energy density, high Columbic efficiency, long cycle life,
and convenient to fabricate any size or shape of the battery, are
the vital features of this battery technology. Lithium-ion
batteries are already being used widely in most of the consumer
electronics such as mobile phones, laptops, PDAs etc. and are in
early stages of application in HEV and EV, which will have far and
wide implications and benefits to society. The book contains ten
chapters, each focusing on a specific topic pertaining to the
application of lithium-ion batteries in Electric Vehicles. Basic
principles, electrode materials, electrolytes, high voltage
cathodes, recycling spent Li-ion batteries and battery charge
controller are addressed. This book is unique among the countable
books focusing on the lithium-ion battery technologies for
vehicular applications. It provides fundamentals and practical
knowledge on the lithium-ion battery for vehicular application.
Students, scholars, academicians, and battery and automobile
industries will find this volume useful.
Lithium-ion batteries are the most promising among the secondary
battery technologies, for providing high energy and high power
required for hybrid electric vehicles (HEV) and electric vehicles
(EV). Lithium-ion batteries consist of conventional graphite or
lithium titanate as anode and lithium transition metal-oxides as
cathode. A lithium salt dissolved in an aprotic solvent such as
ethylene carbonate and diethylene carbonate is used as electrolyte.
This rechargeable battery operates based on the principle of
electrochemical lithium insertion/re-insertion or
intercalation/de-intercalation during charging/discharging of the
battery. It is essential that both electrodes have layered
structure which should accept and release the lithium-ion. In
advanced lithium-ion battery technologies, other than layered
anodes are also considered. High cell voltage, high capacity as
well as energy density, high Columbic efficiency, long cycle life,
and convenient to fabricate any size or shape of the battery, are
the vital features of this battery technology. Lithium-ion
batteries are already being used widely in most of the consumer
electronics such as mobile phones, laptops, PDAs etc. and are in
early stages of application in HEV and EV, which will have far and
wide implications and benefits to society. The book contains ten
chapters, each focusing on a specific topic pertaining to the
application of lithium-ion batteries in Electric Vehicles. Basic
principles, electrode materials, electrolytes, high voltage
cathodes, recycling spent Li-ion batteries and battery charge
controller are addressed. This book is unique among the countable
books focusing on the lithium-ion battery technologies for
vehicular applications. It provides fundamentals and practical
knowledge on the lithium-ion battery for vehicular application.
Students, scholars, academicians, and battery and automobile
industries will find this volume useful.
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