Realization of a 594 Wh kg -1 Lithium-Metal Battery Using a Lithium-Free V 2 O 5 Cathode with Enhanced Performances by Nanoarchitecturing
To realize a high-energy lithium metal battery (LMB) using a high-capacity Li-free cathode, in this work, nanoplate-stacked V O with dominantly exposed (010) facets and a relatively short [010] length is proposed to be used as a cathode. The V O nanostructure can be fabricated via a modified hydroth...
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Veröffentlicht in: | Small (Weinheim an der Bergstrasse, Germany) Germany), 2023-01, Vol.19 (1), p.e2205086 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | To realize a high-energy lithium metal battery (LMB) using a high-capacity Li-free cathode, in this work, nanoplate-stacked V
O
with dominantly exposed (010) facets and a relatively short [010] length is proposed to be used as a cathode. The V
O
nanostructure can be fabricated via a modified hydrothermal method, including a Li
crystallization inhibitor, followed by heat treatment. In particular, the enlargement of the favorable Li
diffusion pathway in the [010] direction and the formation of a robust hierarchical nanoplate-stacked structure in the modified V
O
improves the electrochemical kinetics and stability; as a result, the nanoplate-stacked V
O
electrode exhibits a higher capacity and rate performance (258 mAh g
at 50 mA g
[0.17 C], 140 mAh g
at 1 A g
[3.4 C]) and cycling capability (79% capacity retention after 100 cycles at 0.5 C) compared to the previously reported V
O
nanobelt electrode. Notably, the LMB composed of Li//nanoplate-stacked V
O
full-cells shows high specific energy densities of 594.1 and 296.2 Wh kg
at 0.1 and 1.0 C, respectively, and a high Coulombic efficiency of 99.6% during 50 cycles. |
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ISSN: | 1613-6810 1613-6829 |
DOI: | 10.1002/smll.202205086 |