[PDF] Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning - eBooks Review

Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning


Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning
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Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning


Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning
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Author : Austin Daniel Sendek
language : en
Publisher:
Release Date : 2018

Accelerating The Design And Discovery Of Solid Lithium Ion Conductor Materials With Physics Based Machine Learning written by Austin Daniel Sendek and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018 with categories.




Virtual Materials Design


Virtual Materials Design
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Author : Norbert Huber
language : en
Publisher: Frontiers Media SA
Release Date : 2022-08-02

Virtual Materials Design written by Norbert Huber and has been published by Frontiers Media SA this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-08-02 with Technology & Engineering categories.




Transition Metal Oxides For Electrochemical Energy Storage


Transition Metal Oxides For Electrochemical Energy Storage
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Author : Jagjit Nanda
language : en
Publisher: John Wiley & Sons
Release Date : 2022-03-28

Transition Metal Oxides For Electrochemical Energy Storage written by Jagjit Nanda and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-03-28 with Technology & Engineering categories.


Transition Metal Oxides for Electrochemical Energy Storage Explore this authoritative handbook on transition metal oxides for energy storage Metal oxides have become one of the most important classes of materials in energy storage and conversion. They continue to have tremendous potential for research into new materials and devices in a wide variety of fields. Transition Metal Oxides for Electrochemical Energy Storage delivers an insightful, concise, and focused exploration of the science and applications of metal oxides in intercalation-based batteries, solid electrolytes for ionic conduction, pseudocapacitive charge storage, transport and 3D architectures and interfacial phenomena and defects. The book serves as a one-stop reference for materials researchers seeking foundational and applied knowledge of the titled material classes. Transition Metal Oxides offers readers in-depth information covering electrochemistry, morphology, and both in situ and in operando characterization. It also provides novel approaches to transition metal oxide-enabled energy storage, like interface engineering and three-dimensional nanoarchitectures. Readers will also benefit from the inclusion of: A thorough introduction to the landscape and solid-state chemistry of transition metal oxides for energy storage An exploration of electrochemical energy storage mechanisms in transition metal oxides, including intercalation, pseudocapacitance, and conversion Practical discussions of the electrochemistry of transition metal oxides, including oxide/electrolyte interfaces and energy storage in aqueous electrolytes An examination of the characterization of transition metal oxides for energy storage Perfect for materials scientists, electrochemists, inorganic chemists, and applied physicists, Transition Metal Oxides for Electrochemical Energy Storage will also earn a place in the libraries of engineers in power technology and professions working in the electrotechnical industry seeking a one-stop reference on transition metal oxides for energy storage.



Design Fabrication And Electrochemical Performance Of Nanostructured Carbon Based Materials For High Energy Lithium Sulfur Batteries


Design Fabrication And Electrochemical Performance Of Nanostructured Carbon Based Materials For High Energy Lithium Sulfur Batteries
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Author : Guangmin Zhou
language : en
Publisher: Springer
Release Date : 2017-02-09

Design Fabrication And Electrochemical Performance Of Nanostructured Carbon Based Materials For High Energy Lithium Sulfur Batteries written by Guangmin Zhou and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-02-09 with Science categories.


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 electrolyte can be greatly reduced by the strong binding of sulfur to the oxygen-containing groups on reduced graphene oxide; manifests that graphene foam can be used as a 3D current collector for high sulfur loading and high sulfur content cathodes; and presents the design of a unique sandwich structure with pure sulfur between two graphene membranes as a very simple but effective approach to the fabrication of Li-S batteries with ultrafast charge/discharge rates and long service lives. The book offers an invaluable resource for researchers, scientists, and engineers in the field of energy storage, providing essential insights, useful methods, and practical ideas that can be considered for the industrial production and future application of Li-S batteries.



Rational Design Of Nanostructured Polymer Electrolytes And Solid Liquid Interphases For Lithium Batteries


Rational Design Of Nanostructured Polymer Electrolytes And Solid Liquid Interphases For Lithium Batteries
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Author : Snehashis Choudhury
language : en
Publisher: Springer Nature
Release Date : 2019-09-25

Rational Design Of Nanostructured Polymer Electrolytes And Solid Liquid Interphases For Lithium Batteries written by Snehashis Choudhury and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-09-25 with Technology & Engineering categories.


This thesis makes significant advances in the design of electrolytes and interfaces in electrochemical cells that utilize reactive metals as anodes. Such cells are of contemporary interest because they offer substantially higher charge storage capacity than state-of-the-art lithium-ion battery technology. Batteries based on metallic anodes are currently considered impractical and unsafe because recharge of the anode causes physical and chemical instabilities that produce dendritic deposition of the metal leading to catastrophic failure via thermal runaway. This thesis utilizes a combination of chemical synthesis, physical & electrochemical analysis, and materials theory to investigate structure, ion transport properties, and electrochemical behaviors of hybrid electrolytes and interfacial phases designed to prevent such instabilities. In particular, it demonstrates that relatively low-modulus electrolytes composed of cross-linked networks of polymer-grafted nanoparticles stabilize electrodeposition of reactive metals by multiple processes, including screening electrode electrolyte interactions at electrochemical interfaces and by regulating ion transport in tortuous nanopores. This discovery is significant because it overturns a longstanding perception in the field of nanoparticle-polymer hybrid electrolytes that only solid electrolytes with mechanical modulus higher than that of the metal electrode are able to stabilize electrodeposition of reactive metals.



Accelerating Materials Discovery For Optical Applications Using Machine Learning Natural Language Processing And Density Functional Theory


Accelerating Materials Discovery For Optical Applications Using Machine Learning Natural Language Processing And Density Functional Theory
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Author : Jiuyang Zhao
language : en
Publisher:
Release Date : 2022

Accelerating Materials Discovery For Optical Applications Using Machine Learning Natural Language Processing And Density Functional Theory written by Jiuyang Zhao and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022 with categories.


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Nanostructured Materials For Next Generation Energy Storage And Conversion


Nanostructured Materials For Next Generation Energy Storage And Conversion
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Author : Qiang Zhen
language : en
Publisher: Springer Nature
Release Date : 2019-10-10

Nanostructured Materials For Next Generation Energy Storage And Conversion written by Qiang Zhen and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-10-10 with Technology & Engineering categories.


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 is also presented where appropriate. This monograph is written by recognized experts in the field, and is both timely and appropriate as this decade will see application of lithium as an energy carrier, for example in the transportation sector. This Volume focuses on the fundamentals related to batteries using the latest research in the field of battery physics, chemistry, and electrochemistry. The research summarised in this book by leading experts is laid out in an easy-to-understand format to enable the layperson to grasp the essence of the technology, its pitfalls and current challenges in high-power Lithium battery research. After introductory remarks on policy and battery safety, a series of monographs are offered related to fundamentals of lithium batteries, including, theoretical modeling, simulation and experimental techniques used to characterize electrode materials, both at the material composition, and also at the device level. The different properties specific to each component of the batteries are discussed in order to offer tradeoffs between power and energy density, energy cycling, safety and where appropriate end-of-life disposal. Parameters affecting battery performance and cost, longevity using newer metal oxides, different electrolytes are also reviewed in the context of safety concerns and in relation to the solid-electrolyte interface. Separators, membranes, solid-state electrolytes, and electrolyte additives are also reviewed in light of safety, recycling, and high energy endurance issues. The book is intended for a wide audience, such as scientists who are new to the field, practitioners, as well as students in the STEM and STEP fields, as well as students working on batteries. The sections on safety and policy would be of great interest to engineers and technologists who want to obtain a solid grounding in the fundamentals of battery science arising from the interaction of electrochemistry, solid-state materials science, surfaces, and interfaces.



Lithium Ion Battery Materials And Engineering


Lithium Ion Battery Materials And Engineering
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Author : Malgorzata K. Gulbinska
language : en
Publisher: Springer
Release Date : 2014-09-06

Lithium Ion Battery Materials And Engineering written by Malgorzata K. Gulbinska and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-09-06 with Technology & Engineering categories.


Gaining public attention due, in part, to their potential application as energy storage devices in cars, Lithium-ion batteries have encountered widespread demand, however, the understanding of lithium-ion technology has often lagged behind production. This book defines the most commonly encountered challenges from the perspective of a high-end lithium-ion manufacturer with two decades of experience with lithium-ion batteries and over six decades of experience with batteries of other chemistries. Authors with years of experience in the applied science and engineering of lithium-ion batteries gather to share their view on where lithium-ion technology stands now, what are the main challenges, and their possible solutions. The book contains real-life examples of how a subtle change in cell components can have a considerable effect on cell’s performance. Examples are supported with approachable basic science commentaries. Providing a unique combination of practical know-how with an in-depth perspective, this book will appeal to graduate students, young faculty members, or others interested in the current research and development trends in lithium-ion technology.



Accelerating Materials Discovery With Machine Learning


Accelerating Materials Discovery With Machine Learning
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Author : Rhys Goodall
language : en
Publisher:
Release Date : 2021

Accelerating Materials Discovery With Machine Learning written by Rhys Goodall and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021 with categories.




Lithium Ion Batteries And Solar Cells


Lithium Ion Batteries And Solar Cells
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Author : Ming-Fa Lin
language : en
Publisher: CRC Press
Release Date : 2021-01-17

Lithium Ion Batteries And Solar Cells written by Ming-Fa Lin and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-01-17 with Technology & Engineering categories.


Lithium-Ion Batteries and Solar Cells: Physical, Chemical, and Materials Properties presents a thorough investigation of diverse physical, chemical, and materials properties and special functionalities of lithium-ion batteries and solar cells. It covers theoretical simulations and high-resolution experimental measurements that promote a full understanding of the basic science to develop excellent device performance. Employs first-principles and the machine learning method to fully explore the rich and unique phenomena of cathode, anode, and electrolyte (solid and liquid states) in lithium-ion batteries Develops distinct experimental methods and techniques to enhance the performance of lithium-ion batteries and solar cells Reviews syntheses, fabrication, and measurements Discusses open issues, challenges, and potential commercial applications This book is aimed at materials scientists, chemical engineers, and electrical engineers developing enhanced batteries and solar cells for peak performance.