Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries
Despite having a significantly higher capacity (>1000 mA h g−1) as compared to the conventional graphite anode, the adoption of the conversion-type transition metal oxide (TMO) anodes is restricted due to their inferior cycling stability, sluggish ion transport behavior, high potential plateau vs...
Saved in:
Main Authors: | , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Royal Society of Chemistry
2022
|
Subjects: | |
Online Access: | http://umpir.ump.edu.my/id/eprint/34773/1/Quasi-anisotropic%20benefits%20in%20electrospun%20.pdf http://umpir.ump.edu.my/id/eprint/34773/ https://doi.org/10.1039/D2NJ01462A https://doi.org/10.1039/D2NJ01462A |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
id |
my.ump.umpir.34773 |
---|---|
record_format |
eprints |
spelling |
my.ump.umpir.347732022-07-22T04:11:38Z http://umpir.ump.edu.my/id/eprint/34773/ Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries Ling, Jin Kiong Karuppiah, Chelladurai Das, Santanu Singh, Vivek Kumar Izan Izwan, Misnon Mohd Hasbi, Ab. Rahim Peng, Shengjie Yang, Chun Chen Rajan, Jose QD Chemistry Despite having a significantly higher capacity (>1000 mA h g−1) as compared to the conventional graphite anode, the adoption of the conversion-type transition metal oxide (TMO) anodes is restricted due to their inferior cycling stability, sluggish ion transport behavior, high potential plateau vs. Li/Li+, etc. Subsequent developments through nanostructuring and chemical composition engineering have improved the electrochemical performance of TMO anodes. Herein, a quasi-anisotropic nano-octahedron quaternary metal oxide composite is designed and synthesized using pilot-scale electrospinning by manipulating the conductivity of the polymeric solution. This morphology is first reported via electrospinning, which routinely produces nanofiber morphology. The fabricated nano-octahedron exhibited slightly higher gravimetry specific capacity (∼1184 mA h g−1 at 100 mA g−1) as compared to the nanofiber counterpart (1075 mA h g−1 at 100 mA g−1), with an initial capacity loss of 37.4% and 38.7%, respectively. Owing to the isotropic volume expansion, the nano-octahedron was capable of retaining 78.9% (or 291.2 mA h g−1) capacity after 500 charge/discharge cycles at 1000 mA g−1, compared to the inferior 24.1% (or 71.1 mA h g−1) for its nanofiber counterpart. Overall, the results discussed here provide valuable information on morphology design for future high-performance TMO anodes. Royal Society of Chemistry 2022 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/34773/1/Quasi-anisotropic%20benefits%20in%20electrospun%20.pdf Ling, Jin Kiong and Karuppiah, Chelladurai and Das, Santanu and Singh, Vivek Kumar and Izan Izwan, Misnon and Mohd Hasbi, Ab. Rahim and Peng, Shengjie and Yang, Chun Chen and Rajan, Jose (2022) Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries. New Journal of Chemistry, 46 (20). pp. 9799-9810. ISSN 1144-0546 https://doi.org/10.1039/D2NJ01462A https://doi.org/10.1039/D2NJ01462A |
institution |
Universiti Malaysia Pahang |
building |
UMP Library |
collection |
Institutional Repository |
continent |
Asia |
country |
Malaysia |
content_provider |
Universiti Malaysia Pahang |
content_source |
UMP Institutional Repository |
url_provider |
http://umpir.ump.edu.my/ |
language |
English |
topic |
QD Chemistry |
spellingShingle |
QD Chemistry Ling, Jin Kiong Karuppiah, Chelladurai Das, Santanu Singh, Vivek Kumar Izan Izwan, Misnon Mohd Hasbi, Ab. Rahim Peng, Shengjie Yang, Chun Chen Rajan, Jose Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
description |
Despite having a significantly higher capacity (>1000 mA h g−1) as compared to the conventional graphite anode, the adoption of the conversion-type transition metal oxide (TMO) anodes is restricted due to their inferior cycling stability, sluggish ion transport behavior, high potential plateau vs. Li/Li+, etc. Subsequent developments through nanostructuring and chemical composition engineering have improved the electrochemical performance of TMO anodes. Herein, a quasi-anisotropic nano-octahedron quaternary metal oxide composite is designed and synthesized using pilot-scale electrospinning by manipulating the conductivity of the polymeric solution. This morphology is first reported via electrospinning, which routinely produces nanofiber morphology. The fabricated nano-octahedron exhibited slightly higher gravimetry specific capacity (∼1184 mA h g−1 at 100 mA g−1) as compared to the nanofiber counterpart (1075 mA h g−1 at 100 mA g−1), with an initial capacity loss of 37.4% and 38.7%, respectively. Owing to the isotropic volume expansion, the nano-octahedron was capable of retaining 78.9% (or 291.2 mA h g−1) capacity after 500 charge/discharge cycles at 1000 mA g−1, compared to the inferior 24.1% (or 71.1 mA h g−1) for its nanofiber counterpart. Overall, the results discussed here provide valuable information on morphology design for future high-performance TMO anodes. |
format |
Article |
author |
Ling, Jin Kiong Karuppiah, Chelladurai Das, Santanu Singh, Vivek Kumar Izan Izwan, Misnon Mohd Hasbi, Ab. Rahim Peng, Shengjie Yang, Chun Chen Rajan, Jose |
author_facet |
Ling, Jin Kiong Karuppiah, Chelladurai Das, Santanu Singh, Vivek Kumar Izan Izwan, Misnon Mohd Hasbi, Ab. Rahim Peng, Shengjie Yang, Chun Chen Rajan, Jose |
author_sort |
Ling, Jin Kiong |
title |
Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
title_short |
Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
title_full |
Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
title_fullStr |
Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
title_full_unstemmed |
Quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
title_sort |
quasi-anisotropic benefits in electrospun nickel–cobalt–manganese oxide nano-octahedron as anode for lithium-ion batteries |
publisher |
Royal Society of Chemistry |
publishDate |
2022 |
url |
http://umpir.ump.edu.my/id/eprint/34773/1/Quasi-anisotropic%20benefits%20in%20electrospun%20.pdf http://umpir.ump.edu.my/id/eprint/34773/ https://doi.org/10.1039/D2NJ01462A https://doi.org/10.1039/D2NJ01462A |
_version_ |
1739828267517476864 |
score |
13.211869 |