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A layered-spinel heterostructure 0.5NaMnO2–0.5Li0.5Mn2O4 cathode for advanced lithium ion batteries.

Authors :
Gao, Tianfeng
Cai, Yanjun
Kong, Qingrong
Tian, Hualing
Yao, Xiang
Su, Zhi
Source :
New Journal of Chemistry; 11/28/2023, Vol. 47 Issue 44, p20594-20601, 8p
Publication Year :
2023

Abstract

Heterostructure NaMnO<subscript>2</subscript>–Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> cathode materials were prepared by adjusting the molar ratio of sodium in the materials by a solid phase method. X-ray diffraction (XRD) analysis showed that the prepared samples were a layered-spinel heterostructure NaMnO<subscript>2</subscript>–Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript>. The lattice fingerprint region of NaMnO<subscript>2</subscript>–Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> was studied by electron microscopy, and the results showed the (111) plane of Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> and the (001) plane of NaMnO<subscript>2</subscript>. The heterostructure 0.5NaMnO<subscript>2</subscript>–0.5Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> exhibits superior high-rate capability and excellent cycling performance. The proposed heterostructure 0.5NaMnO<subscript>2</subscript>–0.5Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> cathode is investigated by in situ XRD and impedance analysis. The rate of discharge of heterostructure 0.5NaMnO<subscript>2</subscript>–0.5Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> was 108.8 mA h g<superscript>−1</superscript> at 500 mA g<superscript>−1</superscript>. The initial discharge of 0.5NaMnO<subscript>2</subscript>–0.5Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript> was 61.69 mA h g<superscript>−1</superscript>, and after 1000 cycles the discharge capacity remained 51.13 mA h g<superscript>−1</superscript> at a current of 2 A g<superscript>−1</superscript>. The heterogeneous structure combines the advantages of high capacity of the layered structure NaMnO<subscript>2</subscript> and the structural stability of the spinel Li<subscript>0.5</subscript>Mn<subscript>2</subscript>O<subscript>4</subscript>, which exert a synergistic effect and improve the electrochemical performance of the lithium-free layered NaMnO<subscript>2</subscript> cathode material. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
11440546
Volume :
47
Issue :
44
Database :
Complementary Index
Journal :
New Journal of Chemistry
Publication Type :
Academic Journal
Accession number :
173555634
Full Text :
https://doi.org/10.1039/d3nj03808d