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Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide

Victor Vladimirovich De 1
Victor Vladimirovich De
Ekaterina Andreevna Pomerantseva 1
Ekaterina Andreevna Pomerantseva
Tatiana L'vovna Kulova 2
Tatiana L'vovna Kulova
Anastasiya Vadimovna Grigor'eva
Alexandr Mordukhaevich Skundin
Eugene Alekseevich Goodilin
Yuriy Dmitrievich Tret'yakov 1, 3
Yuriy Dmitrievich Tret'yakov
Published 2009-07-03
CommunicationVolume 19, Issue 4, 187-189
8
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De V. V. et al. Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide // Mendeleev Communications. 2009. Vol. 19. No. 4. pp. 187-189.
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De V. V., Pomerantseva E. A., Kulova T. L., Grigor'eva A. V., Skundin A. M., Goodilin E. A., Tret'yakov Y. D. Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide // Mendeleev Communications. 2009. Vol. 19. No. 4. pp. 187-189.
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TY - JOUR
DO - 10.1016/j.mencom.2009.07.004
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2009.07.004
TI - Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide
T2 - Mendeleev Communications
AU - De, Victor Vladimirovich
AU - Pomerantseva, Ekaterina Andreevna
AU - Kulova, Tatiana L'vovna
AU - Grigor'eva, Anastasiya Vadimovna
AU - Skundin, Alexandr Mordukhaevich
AU - Goodilin, Eugene Alekseevich
AU - Tret'yakov, Yuriy Dmitrievich
PY - 2009
DA - 2009/07/03
PB - Mendeleev Communications
SP - 187-189
IS - 4
VL - 19
ER -
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@article{2009_De,
author = {Victor Vladimirovich De and Ekaterina Andreevna Pomerantseva and Tatiana L'vovna Kulova and Anastasiya Vadimovna Grigor'eva and Alexandr Mordukhaevich Skundin and Eugene Alekseevich Goodilin and Yuriy Dmitrievich Tret'yakov},
title = {Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide},
journal = {Mendeleev Communications},
year = {2009},
volume = {19},
publisher = {Mendeleev Communications},
month = {Jul},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2009.07.004},
number = {4},
pages = {187--189},
doi = {10.1016/j.mencom.2009.07.004}
}
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De, Victor Vladimirovich, et al. “Synthesis, chemical modification and electrochemical behaviour of layered sodium manganese dioxide.” Mendeleev Communications, vol. 19, no. 4, Jul. 2009, pp. 187-189. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2009.07.004.

Keywords

H-forms of manganese oxides
lithium batteries
Na-birnessite

Abstract

NaxMnO2·nH2O birnessite was used to yield one-dimensional nanostructures of manganese dioxide and effect of its chemical composition on electrochemical performance in lithium cells was studied.

References

2.
Hydrothermal Soft Chemical Process for Synthesis of Manganese Oxides with Tunnel Structures
3.
Hydrothermal Soft Chemical Reaction for Formation of Sandwich Layered Manganese Oxide
Feng Q., Honbu C., Yanagisawa K., Yamasaki N.
Chemistry of Materials, 1999
5.
Electrochemical lithium insertion into layered manganates
Strobel P., Mouget C.
Materials Research Bulletin, 1993
8.
Chemical lithium insertion into sol–gel lamellar manganese dioxide MnO1.85·nH2O
Le Goff P., Baffier N., Bach S., Pereira-Ramos J.
Journal of Materials Chemistry A, 1994
9.
Sol−Gel Synthesis of Layered Birnessite-Type Manganese Oxides
Ching S., Petrovay D.J., Jorgensen M.L., Suib S.L.
Inorganic Chemistry, 1997
10.
Sur quelques nouvelles phases de formule NaxMnO2 (x ⩽ 1)
Parant J., Olazcuaga R., Devalette M., Fouassier C., Hagenmuller P.
Journal of Solid State Chemistry, 1971
12.
Hydrothermal synthesis and properties of Na0.70MnO2.25 layer crystal
Hirano S., Narita R., Naka S.
Materials Research Bulletin, 1984
16.
Doping effects on structure and electrode performance of K-birnessite-type manganese dioxides for rechargeable lithium battery
17.
Todorokite as a Li Insertion Cathode Comparison of a Large Tunnel Framework “ ” Structure with Its Related Layered Structures
18.
Improved cyclability of Na-birnessite partially substituted by cobalt
19.
10.1016/j.mencom.2009.07.004_bib19
Pomerantseva
Dokl. Akad. Nauk SSSR, 2007
20.
E. A. Pomerantseva, T. L. Kulova, Ya. Yu. Philippov, A. M. Skundin, E. A. Goodilin and Yu. D. Tretyakov, Solid State Ionics, submitted.
21.
Synthesis and Characterization of Nanofibrous Sodium Manganese Oxide with a 2 × 4 Tunnel Structure
Xia G., Tong W., Tolentino E.N., Duan N., Brock S.L., Wang J., Suib S.L., Ressler T.
Chemistry of Materials, 2001
22.
10.1016/j.mencom.2009.07.004_bib22
Kozlova
Dokl. Akad. Nauk SSSR, 2006
23.
Structural and electrochemical properties of the proton / γ-MnO2 system
Chabre Y., Pannetier J.
Progress in Solid State Chemistry, 1995
27.
Synthesis, structural and electrochemical characterizations of the sol–gel birnessite MnO1.84·0.6H2O
Franger S., Bach S., Farcy J., Pereira-Ramos J.-., Baffier N.
Journal of Power Sources, 2002
28.
Hydrothermal Synthesis and Characterization of KxMnO2·yH2O
Chen R., Zavalij P., Whittingham M.S.
Chemistry of Materials, 1996
29.
Nanostructured materials for advanced energy conversion and storage devices
Aricò A.S., Bruce P., Scrosati B., Tarascon J., van Schalkwijk W.
Nature Materials, 2005