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- Next generation Batteries with Sulfur Cathodes
- Author : Krzysztof Jan Siczek
- Publsiher : Academic Press
- Release : 06 March 2019
- ISBN : 0128166126
- Pages : 259 pages
- Rating : /5 from reviews
GET THIS BOOKNext generation Batteries with Sulfur Cathodes
Download or read book entitled Next generation Batteries with Sulfur Cathodes by author: Krzysztof Jan Siczek which was release on 06 March 2019 and published by Academic Press with total page 259 pages . This book available in PDF, EPUB and Kindle Format. Next-Generation Batteries with Sulfur Cathodes provides a comprehensive review of a modern class of batteries with sulfur cathodes, particularly lithium-sulfur cathodes. The book covers recent trends, advantages and disadvantages in Li-S, Na-S, Al-S and Mg-S batteries and why these batteries are very promising for applications in hybrid and electric vehicles. Battery materials and modelling are also dealt with, as is their design, the physical phenomena existing in batteries, and a comparison of batteries between commonly used lithium-ion batteries and the new class of batteries with sulfur cathodes that are useful for devices like vehicles, wind power aggregates, computers and measurement units. Provides solutions for the recycling of batteries with sulfur cathodes Includes the effects of analysis and pro and cons of Li-S, Na-S, Al-S, Mg-S and Zn-S batteries Describes state-of-the-art technological developments and possible applications
- Author : Krzysztof Jan Siczek
- Publisher : Academic Press
- Release Date : 2019-03-06
- Total pages : 259
- ISBN : 0128166126
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Summary : Next-Generation Batteries with Sulfur Cathodes provides a comprehensive review of a modern class of batteries with sulfur cathodes, particularly lithium-sulfur cathodes. The book covers recent trends, advantages and disadvantages in Li-S, Na-S, Al-S and Mg-S batteries and why these batteries are very promising for applications in hybrid and electric vehicles. ...
- Author : Mark Wild,Greg Offer
- Publisher : Wiley
- Release Date : 2019-03-25
- Total pages : 336
- ISBN : 0128166126
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Summary : A guide to lithium sulfur batteries that explores their materials, electrochemical mechanisms and modelling and includes recent scientific developments Lithium Sulfur Batteries (Li-S) offers a comprehensive examination of Li-S batteries from the viewpoint of the materials used in their construction, the underlying electrochemical mechanisms and how this translates into the ...
- Author : Kiyoshi Kanamura
- Publisher : Springer Nature
- Release Date : 2021-04-22
- Total pages : 212
- ISBN : 0128166126
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Summary : Read online Next Generation Batteries written by Kiyoshi Kanamura, published by Springer Nature which was released on . Download full Next Generation Batteries Books now! Available in PDF, ePub and Kindle....
- Author : David Sichen Wu
- Publisher : Unknown
- Release Date : 2021
- Total pages : 212
- ISBN : 0128166126
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Summary : Lithium-sulfur (Li-S) batteries have a high theoretical energy density of ~2500 Wh/kg (vs. ~400 Wh/kg of Li-ion batteries) and are promising candidates for meeting future energy storage demands. However, the practical applications of Li-S batteries have been severely hindered by its poor cycling life and stability. In the first part ...
- Author : Qiang Zhen,Sajid Bashir,Jingbo Louise Liu
- Publisher : Springer Nature
- Release Date : 2019-10-10
- Total pages : 472
- ISBN : 0128166126
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Summary : Volume 3 of a 4-volume series is a concise, authoritative and an eminently readable and enjoyable experience related to lithium ion battery design, characterization and usage for portable and stationary power. Although the major focus is on lithium metal oxides or transition metal oxide as alloys, the discussion of fossil fuels ...
- Author : Wei Xia
- Publisher : Springer
- Release Date : 2018-04-03
- Total pages : 138
- ISBN : 0128166126
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Summary : This thesis systematically introduces readers to a new metal-organic framework approach to fabricating nanostructured materials for electrochemical applications. Based on the metal-organic framework (MOF) approach, it also demonstrates the latest ideas on how to create optimal MOF and MOF-derived nanomaterials for electrochemical reactions under controlled conditions. The thesis offers a ...
- Author : Demir-cakan Rezan
- Publisher : #N/A
- Release Date : 2017-06-09
- Total pages : 372
- ISBN : 0128166126
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Summary : Lithium-sulfur (Li-S) batteries give us an alternative to the more prevalent lithium-ion (Li-ion) versions, and are known for their observed high energy densities. Systems using Li-S batteries are in early stages of development and commercialization however could potentially provide higher, safer levels of energy at significantly lower cost. In this ...
- Author : Jiangfeng Ni,Li Lu
- Publisher : World Scientific
- Release Date : 2021-02-10
- Total pages : 228
- ISBN : 0128166126
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Summary : Over-consumption of fossil fuels has caused deficiency of limited resources and environmental pollution. Hence, deployment and utilization of renewable energy become an urgent need. The development of next-generation rechargeable batteries that store more energy and last longer has been significantly driven by the utilization of renewable energy.This book starts ...
- Author : Guangmin Zhou
- Publisher : Springer
- Release Date : 2017-02-09
- Total pages : 115
- ISBN : 0128166126
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Summary : This book focuses on the design, fabrication and applications of carbon-based materials for lithium-sulfur (Li-S) batteries. It provides insights into the localized electrochemical transition of the “solid-solid” reaction instead of the “sulfur-polysulfides-lithium sulfides” reaction through the desolvation effect in subnanometer pores; demonstrates that the dissolution/diffusion of polysulfide anions in ...
- Author : Benjamin John Papandrea
- Publisher : Unknown
- Release Date : 2017
- Total pages : 103
- ISBN : 0128166126
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Summary : Energy storage devices are of increasing importance for applications in mobile electronics, hybrid electric vehicles, and can also play a critical role in renewable energy harvesting, conversion and storage. Since its commercial inception in the 1990's, the lithium-ion battery represents the dominant energy storage technology for mobile power supply today. ...
- Author : Zhen Wei
- Publisher : Unknown
- Release Date : 2019
- Total pages : 74
- ISBN : 0128166126
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Summary : The objective of this work is to develop an LSB cathode that solves the above issues and contributes to advancing the development of the LSB technology. We focus on improving the electrical conductivity while reducing the shuttle effect, a parasitic reaction of the polysulfides at the anode lithium surface. To ...
- Author : Tōkyō Nōkō Daigaku
- Publisher : Unknown
- Release Date : 1996
- Total pages : 212
- ISBN : 0128166126
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Summary : Read online Annual Report of Tokyo University of Agriculture and Technology written by Tōkyō Nōkō Daigaku, published by which was released on 1996. Download full Annual Report of Tokyo University of Agriculture and Technology Books now! Available in PDF, ePub and Kindle....
- Author : Gordan A. Maxwell,Stuart K. Drummond
- Publisher : Nova Science Pub Incorporated
- Release Date : 2010
- Total pages : 246
- ISBN : 0128166126
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Summary : This text analyses the extent of foreign portfolio investment in the U.S. economy and assesses the economic conditions that are attracting such investment and the impact such investments are having on the economy....
- Author : Anonim
- Publisher : Unknown
- Release Date : 2003
- Total pages : 212
- ISBN : 0128166126
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Summary : Read online The Electronics Industry Report written by , published by which was released on 2003. Download full The Electronics Industry Report Books now! Available in PDF, ePub and Kindle....
- Author : Anonim
- Publisher : Unknown
- Release Date : 2018
- Total pages : 212
- ISBN : 0128166126
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Summary : Abstract : Recently, three dimensional graphene aerogel (3DGA) supported sulfur microparticles was used as a cathode material for lithium–sulfur batteries, which was considered as one of the most promising next generation rechargeable batteries due to its ultra‐high theoretical specific capacity (1675 mAh/g). However, the mechanical strength of 3DGA remains ...