graphene energy storage and conversion applications electrochemical energy storage and conversion

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Author : Zhaoping Liu
ISBN : 9781482203769
Genre : Technology & Engineering
File Size : 68. 78 MB
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Suitable for readers from broad backgrounds, Graphene: Energy Storage and Conversion Applications describes the fundamentals and cutting-edge applications of graphene-based materials for energy storage and conversion systems. It provides an overview of recent advancements in specific energy technologies, such as lithium ion batteries, supercapacitors, fuel cells, solar cells, lithium sulfur batteries, and lithium air batteries. It also considers the outlook of industrial applications in the near future. Offering a brief introduction to the major synthesis methods of graphene, the text details the latest academic and commercial research and developments, covering all potential avenues for graphene’s use in energy-related areas.

Carbons For Electrochemical Energy Storage And Conversion Systems

Author : Francois Beguin
ISBN : 1420055402
Genre : Technology & Engineering
File Size : 26. 53 MB
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As carbons are widely used in energy storage and conversion systems, there is a rapidly growing need for an updated book that describes their physical, chemical, and electrochemical properties. Edited by those responsible for initiating the most progressive conference on Carbon for Energy Storage and Environment Protection (CESEP), this book undoubtedly fills this need. Written in collaboration with prominent scientists in carbon science and its energy-related applications, Carbons for Electrochemical Energy Storage and Conversion Systems provides the most complete and up-to-date coverage available on carbon materials for application in electrochemical energy storage and conversion. The text studies different carbon materials and their detailed physicochemical properties and provides an in-depth review of their wide-ranging applications—including lithium-ion batteries, supercapacitors, fuel cells, and primary cells. Recognizing that most scientists involved with these applications are materials scientists rather than electrochemists, the text begins with a review of electrochemical principles and methods. It then covers the different forms of traditional sp2 carbons, introduces novel techniques for preparing advanced carbons, and describes the main physicochemical properties which control the electrochemical behavior of carbons. The second half of the book focuses on research and provides a wealth of original information on industrial applications. Complete with an abundance of figures, tables, equations, and case studies, this book is the ideal one-stop reference for researchers, engineers, and students working on developing the carbon-based energy storage and conversion systems of tomorrow.

Electrochemical Technologies For Energy Storage And Conversion

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ISBN : 9783527328697
Genre :
File Size : 46. 72 MB
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Electrochemical Supercapacitors For Energy Storage And Delivery

Author : Aiping Yu
ISBN : 9781439869895
Genre : Science
File Size : 51. 75 MB
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Although recognized as an important component of all energy storage and conversion technologies, electrochemical supercapacitators (ES) still face development challenges in order to reach their full potential. A thorough examination of development in the technology during the past decade, Electrochemical Supercapacitors for Energy Storage and Delivery: Fundamentals and Applications provides a comprehensive introduction to the ES from technical and practical aspects and crystallization of the technology, detailing the basics of ES as well as its components and characterization techniques. The book illuminates the practical aspects of understanding and applying the technology within the industry and provides sufficient technical detail of newer materials being developed by experts in the field which may surface in the future. The book discusses the technical challenges and the practical limitations and their associated parameters in ES technology. It also covers the structure and options for device packaging and materials choices such as electrode materials, electrolyte, current collector, and sealants based on comparison of available data. Supplying an in depth understanding of the components, design, and characterization of electrochemical supercapacitors, the book has wide-ranging appeal to industry experts and those new to the field. It can be used as a reference to apply to current work and a resource to foster ideas for new devices that will further the technology as it becomes a larger part of main stream energy storage.

Carbon Based Nanomaterials For Advanced Thermal And Electrochemical Energy Storage And Conversion

Author : Cheng-Te Lin
ISBN : 0128140836
Genre :
File Size : 62. 42 MB
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The large growth in the human population has led to a seminal growth in global energy consumption. Fossil fuel covers the transportation and industrial sectors which is related to almost 90% of global energy consumption. This leads to an unwanted emission of greenhouse gases including carbon dioxide, which results in a critical environmental concern. Moreover, it depletes the carbon resources substantially which could otherwise be utilized for valuable chemicals production. Worldwide energy consumption is expected to at least double by 2050 from levels in 2013. Therefore, to pave the way of technological development, clean and renewable energy sources are essential in addition to attenuating the environmental consequences. The most promising alternative energy sources are thermal, solar and electrochemical energy storage devices, for example, thermoelectric modules, solar cells, fuel cells, supercapacitors, batteries etc. In this regard, carbon nanomaterials, with wide structures variety, have drawn enormous research attentions owing to their fascinating electronic, thermal, and mechanical properties as well as their structural diversity. Carbon-Based Nanomaterials for Advanced Energy Storage and Conversion presents a comprehensive overview of recent theoretical and experimental developments and prospects on carbon-based nanomaterials for thermal, solar, and electrochemical energy conversion and storage applications for both laboratory and industrial perspectives. Provides an overview on the state of the art carbon nanomaterials and key requirements for applications of carbon materials towards efficient energy storage and conversion Presents an updated and comprehensive review of recent work together with theoretical aspects on electrochemistry Includes industrial production of carbon-based materials for energy applications with insights from industrial experts

Carbon Nanomaterials For Electrochemical Energy Technologies

Author : Shuhui Sun
ISBN : 9781351648042
Genre : Science
File Size : 36. 89 MB
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This book offers comprehensive coverage of carbon-based nanomaterials and electrochemical energy conversion and storage technologies such as batteries, fuel cells, supercapacitors, and hydrogen generation and storage, as well as the latest material and new technology development. It addresses a variety of topics such as electrochemical processes, materials, components, assembly and manufacturing, degradation mechanisms, challenges, and strategies. With in-depth discussions ranging from electrochemistry fundamentals to engineering components and applied devices, this all-inclusive reference offers a broad view of various carbon nanomaterials and technologies for electrochemical energy conversion and storage devices.

Graphene Oxide Membranes For Electrochemical Energy Storage And Conversion

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ISBN : OCLC:1051903635
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File Size : 70. 4 MB
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Abstract: Graphene oxide (GO) membranes have recently attracted considerable attention for various applications involving filtration. In electrochemical systems, GO membranes serve as a separator or solid-state electrolyte; the roles which have been played for over four decades by the commercial ionic polymers such as Nafion. Owing to the versatility of GO membranes, they have shown an incredible potential for electrochemical energy storage and conversion. In lithium-sulphur batteries and similar electrochemical systems in which the electrode redox system is based on a conversion mechanism and subject to the so-called shuttle effect, a selective membrane can facilitate the transport of the electroactive species such as Li ions while blocking the release of the electroactive material ( e.g., polysulphides) into the other half-cell. The same requirement is essential for the fabrication of redox flow batteries. Owing to the growing interest in flexible supercapacitors, there is a desire to replace liquid electrolytes with solid electrolytes, and GO membrane provides an appropriate scaffold for trapping gel electrolytes. The performance of Nafion in fuel cells has also been improved by the preparation of GO/Nafion membranes. All these different applications reveal the practical potential of GO membranes for the future energy storage and conversion. Graphical abstract: Highlights: The similarity of graphene oxide membrane performance for electrochemical energy storage and conversion is reviewed. The advantages of graphene oxide over commercial ionic polymers such as Nafion are discussed. The roles of graphene oxide membranes as solid electrolyte or separators are summarized.

Graphene Based Composites For Electrochemical Energy Storage

Author : Jilei Liu
ISBN : 9789811033889
Genre : Technology & Engineering
File Size : 80. 89 MB
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This thesis focuses on the synthesis and characterization of various carbon allotropes (e.g., graphene oxide/graphene, graphene foam (GF), GF/carbon nanotube (CNT) hybrids) and their composites for electrochemical energy storage applications. The coverage ranges from materials synthesis to electrochemical analysis, to state-of-the-art electrochemical energy storage devices, and demonstrates how electrochemical characterization techniques can be integrated and applied in the active materials selection and nanostructure design process. Readers will also discover the latest findings on graphene-based electrochemical energy storage devices including asymmetric supercapacitors, lithium ion batteries and flexible Ni/Fe batteries. Given the unique experimental procedures and methods, the systematic electrochemical analysis, and the creative flexible energy storage device design presented, the thesis offers a valuable reference guide for researchers and newcomers to the field of carbon-based electrochemical energy storage.

High Temperature Electrochemical Energy Conversion And Storage

Author : Yixiang Shi
ISBN : 9781351332026
Genre : Technology & Engineering
File Size : 86. 93 MB
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As global demands for energy and lower carbon emissions rise, developing systems of energy conversion and storage becomes necessary. This book explores how Electrochemical Energy Storage and Conversion (EESC) devices are promising advanced power systems that can directly convert chemical energy in fuel into power, and thereby aid in proposing a solution to the global energy crisis. The book focuses on high-temperature electrochemical devices that have a wide variety of existing and potential applications, including the creation of fuel cells for power generation, production of high-purity hydrogen by electrolysis, high-purity oxygen by membrane separation, and various high-temperature batteries. High-Temperature Electrochemical Energy Conversion and Storage: Fundamentals and Applications provides a comprehensive view of the new technologies in high-temperature electrochemistry. Written in a clear and detailed manner, it is suitable for developers, researchers, or students of any level.

Graphene Based Energy Devices

Author : A. Rashid bin Mohd Yusoff
ISBN : 9783527690329
Genre : Technology & Engineering
File Size : 77. 99 MB
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This first book dedicated to the topic provides an up-to-date account of the many opportunities graphene offers for robust, workable energy generation and storage devices. Following a brief overview of the fundamentals of graphene, including the main synthesis techniques, characterization methods and properties, the first part goes on to deal with graphene for energy storage applications, such as lithium-ion batteries, supercapacitors and hydrogen storage. The second part is concerned with graphene-based energy-generation devices, in particular conventional as well as microbial and enzymatic fuel cells, with chapters on graphene photovoltaics rounding off the book. Throughout, device architectures are not only discussed on a laboratory scale, but also ways for upscaling to an industrial level, including manufacturing processes and quality control. By bridging academic research and industrial development this is invaluable reading for materials scientists, physical chemists, electrochemists, solid state physicists, and those working in the electrotechnical industry.

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