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Lithium-Ion Batteries - A Machine-Generated Summary of Current Research

Englisch · Fester Einband

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Beschreibung

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This is the first machine-generated scientific book in chemistry published by Springer Nature. Serving as an innovative prototype defining the current status of the technology, it also provides an overview about the latest trends of lithium-ion batteries research.

This book explores future ways of informing researchers and professionals. State-of-the-art computer algorithms were applied to: select relevant sources from Springer Nature publications, arrange these in a topical order, and provide succinct summaries of these articles. The result is a cross-corpora auto-summarization of current texts, organized by means of a similarity-based clustering routine in coherent chapters and sections.

This book summarizes more than 150 research articles published from 2016 to 2018 and provides an informative and concise overview of recent research into anode and cathode materials as well as further aspects such as separators, polymer electrolytes, thermal behavior and modelling.

With this prototype, Springer Nature has begun an innovative journey to explore the field of machine-generated content and to find answers to the manifold questions on this fascinating topic. Therefore it was intentionally decided not to manually polish or copy-edit any of the texts so as to highlight the current status and remaining boundaries of machine-generated content.

Our goal is to initiate a broad discussion, together with the research community and domain experts, about the future opportunities, challenges and limitations of this technology.

Inhaltsverzeichnis

Anode materials, sei, carbon, graphite, conductivity, graphene, reversible, formation.

Über den Autor / die Autorin

Machine-generated by Beta Writer 0.7 software developed at Goethe University Frankfurt

Zusammenfassung

This is the first machine-generated scientific book in chemistry published by Springer Nature. Serving as an innovative prototype defining the current status of the technology, it also provides an overview about the latest trends of lithium-ion batteries research.
This book explores future ways of informing researchers and professionals. State-of-the-art computer algorithms were applied to: select relevant sources from Springer Nature publications, arrange these in a topical order, and provide succinct summaries of these articles. The result is a cross-corpora auto-summarization of current texts, organized by means of a similarity-based clustering routine in coherent chapters and sections.
This book summarizes more than 150 research articles published from 2016 to 2018 and provides an informative and concise overview of recent research into anode and cathode materials as well as further aspects such as separators, polymer electrolytes, thermal behavior and modelling.
With this prototype, Springer Nature has begun an innovative journey to explore the field of machine-generated content and to find answers to the manifold questions on this fascinating topic. Therefore it was intentionally decided not to manually polish or copy-edit any of the texts so as to highlight the current status and remaining boundaries of machine-generated content.
Our goal is to initiate a broad discussion, together with the research community and domain experts, about the future opportunities, challenges and limitations of this technology.

Produktdetails

Autoren Beta Writer
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Fester Einband
Erschienen 01.01.2019
 
EAN 9783030167998
ISBN 978-3-0-3016799-8
Seiten 247
Abmessung 162 mm x 241 mm x 244 mm
Gewicht 583 g
Illustration XXXV, 247 p. 3 illus., 2 illus. in color.
Themen Naturwissenschaften, Medizin, Informatik, Technik > Chemie > Physikalische Chemie

B, Chemistry and Materials Science, energy storage, electrochemistry, Materials science, Mechanical and Thermal Energy Storage, Energy, power generation, distribution & storage, Force and energy, Materials for Energy and Catalysis, Energy Materials, Energy, power generation, distribution and storage

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