Sodium and Manganese Stoichiometry of P2‐Type Na 2/3 MnO 2
Abstract To realize a reversible solid‐state Mn III/IV redox couple in layered oxides, co‐operative Jahn–Teller distortion (CJTD) of six‐coordinate Mn III (t 2g 3 –e g 1 ) is a key factor in terms of structural and physical properties. We develop a single‐phase synthesis route for two polymorphs, na...
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Published in | Angewandte Chemie International Edition Vol. 55; no. 41; pp. 12760 - 12763 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
04.10.2016
|
Online Access | Get full text |
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Summary: | Abstract
To realize a reversible solid‐state Mn
III/IV
redox couple in layered oxides, co‐operative Jahn–Teller distortion (CJTD) of six‐coordinate Mn
III
(t
2g
3
–e
g
1
) is a key factor in terms of structural and physical properties. We develop a single‐phase synthesis route for two polymorphs, namely distorted and undistorted P2‐type Na
2/3
MnO
2
having different Mn stoichiometry, and investigate how the structural and stoichiometric difference influences electrochemical reaction. The distorted Na
2/3
MnO
2
delivers 216 mAh g
−1
as a 3 V class positive electrode, reaching 590 Wh (kg oxide)
−1
with excellent cycle stability in a non‐aqueous Na cell and demonstrates better electrochemical behavior compared to undistorted Na
2/3
MnO
2
. Furthermore, reversible phase transitions correlated with CJTD are found upon (de)sodiation for distorted Na
2/3
MnO
2
, providing a new insight into utilization of the Mn
III/IV
redox couple for positive electrodes of Na‐ion batteries. |
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ISSN: | 1433-7851 1521-3773 |
DOI: | 10.1002/anie.201606415 |