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http://dspace.aiub.edu:8080/jspui/handle/123456789/199
Title: | First principles calculations study of α-MnO2 as a potential cathode for Al-ion battery application. |
Authors: | Alfaruqi, Muhammad Hilmy Islam, Saiful Lee, June Jo, Jeonggeun Mathew, Vinod Kim, Jaekook |
Keywords: | DFT Al ion battery |
Issue Date: | 11-Nov-2019 |
Publisher: | RSC |
Citation: | 27 |
Abstract: | α-MnO2 is considered as an attractive cathode material for lithium, sodium and magnesium-ion battery applications because of its relatively large [2 × 2] tunnel, high discharge capacity, environmental benignity and low cost. Therefore, understanding the electrochemical properties of α-MnO2 for eco-friendly trivalent aluminum-ion battery is of great research interest. Herein, we presented a theoretical study of Al insertion into α-MnO2 using first principles calculations based on the density functional theory. We found that Al insertion into α-MnO2 proceeded through 4 insertion stages. The average calculated voltage was found to be 1.55 V. Moreover, our calculations suggested the structural distortion of α-MnO2 upon Al insertion even in the dilute limit of insertion. In addition, the electronic properties of the Al-inserted phases and the effect of the metal doping strategy in α-MnO2 for performance improvement were also discussed. Our study may provide an insight and pave the way for further applications of α-MnO2 as an electrode material and potential insertion host for aluminum-ion batteries. |
URI: | http://dspace.aiub.edu:8080/jspui/handle/123456789/199 |
ISSN: | 20507496, 20507488 |
Appears in Collections: | Publication: Journal |
Files in This Item:
File | Description | Size | Format | |
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5. AIB JMCA.docx | 3.54 MB | Microsoft Word XML | View/Open |
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