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Modeling Electrochemical Energy Stor...
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Korth, Martin.
Modeling Electrochemical Energy Storage at the Atomic Scale
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Modeling Electrochemical Energy Storage at the Atomic Scale/ edited by Martin Korth.
other author:
Korth, Martin.
Description:
VIII, 145 p.online resource. :
Contained By:
Springer Nature eBook
Subject:
Electrochemistry. -
Online resource:
https://doi.org/10.1007/978-3-030-00593-1
ISBN:
9783030005931
Modeling Electrochemical Energy Storage at the Atomic Scale
Modeling Electrochemical Energy Storage at the Atomic Scale
[electronic resource] /edited by Martin Korth. - 1st ed. 2018. - VIII, 145 p.online resource. - Topics in Current Chemistry Collections,2367-4067. - Topics in Current Chemistry Collections,.
Fundamental Challenges for Modeling Electrochemical Energy Storage Systems at the Atomic Scale -- Interfaces and Materials in Lithium Ion Batteries: Challenges for Theoretical Electrochemistry -- Assessment of Simple Models for Molecular Simulation of Ethylene Carbonate and Propylene Carbonate as Solvents for Electrolyte Solutions -- Elucidating Solvation Structures for Rational Design of Multivalent Electrolytes—A Review -- Towards Synergistic Electrode–Electrolyte Design Principles for Nonaqueous Li–O 2 batteries.
The series Topics in Current Chemistry Collections presents critical reviews from the journal Topics in Current Chemistry organized in topical volumes. The scope of coverage is all areas of chemical science including the interfaces with related disciplines such as biology, medicine and materials science. The goal of each thematic volume is to give the non-specialist reader, whether in academia or industry, a comprehensive insight into an area where new research is emerging which is of interest to a larger scientific audience. Each review within the volume critically surveys one aspect of that topic and places it within the context of the volume as a whole. The most significant developments of the last 5 to 10 years are presented using selected examples to illustrate the principles discussed. The coverage is not intended to be an exhaustive summary of the field or include large quantities of data, but should rather be conceptual, concentrating on the methodological thinking that will allow the non-specialist reader to understand the information presented. Contributions also offer an outlook on potential future developments in the field. The chapters “Assessment of Simple Models for Molecular Simulation of Ethylene Carbonate and Propylene Carbonate as Solvents for Electrolyte Solutions” and “Elucidating Solvation Structures for Rational Design of Multivalent Electrolytes—A Review” are available open access under a CC BY 4.0 License via link.springer.com.
ISBN: 9783030005931
Standard No.: 10.1007/978-3-030-00593-1doiSubjects--Topical Terms:
591514
Electrochemistry.
LC Class. No.: QD551-578
Dewey Class. No.: 541.37
Modeling Electrochemical Energy Storage at the Atomic Scale
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Fundamental Challenges for Modeling Electrochemical Energy Storage Systems at the Atomic Scale -- Interfaces and Materials in Lithium Ion Batteries: Challenges for Theoretical Electrochemistry -- Assessment of Simple Models for Molecular Simulation of Ethylene Carbonate and Propylene Carbonate as Solvents for Electrolyte Solutions -- Elucidating Solvation Structures for Rational Design of Multivalent Electrolytes—A Review -- Towards Synergistic Electrode–Electrolyte Design Principles for Nonaqueous Li–O 2 batteries.
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The series Topics in Current Chemistry Collections presents critical reviews from the journal Topics in Current Chemistry organized in topical volumes. The scope of coverage is all areas of chemical science including the interfaces with related disciplines such as biology, medicine and materials science. The goal of each thematic volume is to give the non-specialist reader, whether in academia or industry, a comprehensive insight into an area where new research is emerging which is of interest to a larger scientific audience. Each review within the volume critically surveys one aspect of that topic and places it within the context of the volume as a whole. The most significant developments of the last 5 to 10 years are presented using selected examples to illustrate the principles discussed. The coverage is not intended to be an exhaustive summary of the field or include large quantities of data, but should rather be conceptual, concentrating on the methodological thinking that will allow the non-specialist reader to understand the information presented. Contributions also offer an outlook on potential future developments in the field. The chapters “Assessment of Simple Models for Molecular Simulation of Ethylene Carbonate and Propylene Carbonate as Solvents for Electrolyte Solutions” and “Elucidating Solvation Structures for Rational Design of Multivalent Electrolytes—A Review” are available open access under a CC BY 4.0 License via link.springer.com.
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