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Studies on anionic redox in Li-rich ...
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Li, Biao.
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Studies on anionic redox in Li-rich cathode materials of Li-Ion batteries
Record Type:
Electronic resources : Monograph/item
Title/Author:
Studies on anionic redox in Li-rich cathode materials of Li-Ion batteries/ by Biao Li.
Author:
Li, Biao.
Published:
Singapore :Springer Singapore : : 2019.,
Description:
xi, 124 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- Experimental section -- Polyanion Modified Li-rich Manganese-Based Layered Materials -- Anionic Redox and Stability Mechanism of Li-rich Layered Oxides -- Tuning the Reversibility of Oxygen Redox in Lithium-Rich Layered Oxides -- Thermodynamic Activation of Charge Transfer in Anionic Redox Process for Li-ion Batteries -- Conclusions and outlooks.
Contained By:
Springer eBooks
Subject:
Lithium ion batteries. -
Online resource:
https://doi.org/10.1007/978-981-13-2847-3
ISBN:
9789811328473
Studies on anionic redox in Li-rich cathode materials of Li-Ion batteries
Li, Biao.
Studies on anionic redox in Li-rich cathode materials of Li-Ion batteries
[electronic resource] /by Biao Li. - Singapore :Springer Singapore :2019. - xi, 124 p. :ill. (some col.), digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
Introduction -- Experimental section -- Polyanion Modified Li-rich Manganese-Based Layered Materials -- Anionic Redox and Stability Mechanism of Li-rich Layered Oxides -- Tuning the Reversibility of Oxygen Redox in Lithium-Rich Layered Oxides -- Thermodynamic Activation of Charge Transfer in Anionic Redox Process for Li-ion Batteries -- Conclusions and outlooks.
This book presents studies and discussions on anionic redox, which can be used to boost the capacities of cathode electrodes by providing extra electron transfer. This theoretically and practically significant book facilitates the implementation of anionic redox in electrodes for real-world use and accelerates the development of high-energy-density lithium-ion batteries. Lithium-ion batteries, as energy storage systems, are playing a more and more important role in powering modern society. However, their energy density is still limited by the low specific capacity of the cathode electrodes. Based on a profound understanding of band theory, the author has achieved considerable advances in tuning the redox process of lithium-rich electrodes to obtain enhanced electrochemical performance, identifying both the stability mechanism of anionic redox in lithium-rich cathode materials, and its activation mechanism in these electrode systems.
ISBN: 9789811328473
Standard No.: 10.1007/978-981-13-2847-3doiSubjects--Topical Terms:
1619081
Lithium ion batteries.
LC Class. No.: TK2945.L58 / L535 2019
Dewey Class. No.: 621.312424
Studies on anionic redox in Li-rich cathode materials of Li-Ion batteries
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Introduction -- Experimental section -- Polyanion Modified Li-rich Manganese-Based Layered Materials -- Anionic Redox and Stability Mechanism of Li-rich Layered Oxides -- Tuning the Reversibility of Oxygen Redox in Lithium-Rich Layered Oxides -- Thermodynamic Activation of Charge Transfer in Anionic Redox Process for Li-ion Batteries -- Conclusions and outlooks.
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This book presents studies and discussions on anionic redox, which can be used to boost the capacities of cathode electrodes by providing extra electron transfer. This theoretically and practically significant book facilitates the implementation of anionic redox in electrodes for real-world use and accelerates the development of high-energy-density lithium-ion batteries. Lithium-ion batteries, as energy storage systems, are playing a more and more important role in powering modern society. However, their energy density is still limited by the low specific capacity of the cathode electrodes. Based on a profound understanding of band theory, the author has achieved considerable advances in tuning the redox process of lithium-rich electrodes to obtain enhanced electrochemical performance, identifying both the stability mechanism of anionic redox in lithium-rich cathode materials, and its activation mechanism in these electrode systems.
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Energy (Springer-40367)
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EB TK2945.L58 L535 2019
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