Advances on synthesis and performance of Li-Ion anode batteries-a review
Silicon-based lithium-ion battery negative electrodes represent one of graphite's most promising replacements. However, the enhanced capacity and unique Li+ storage method have raised the demands on the binder and other passive electrode components. For cycle stability, a sufficient carbonaceou...
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Format: | Article |
Language: | English |
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Elsevier
2024-03-01
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Series: | Chemical Engineering Journal Advances |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2666821124000061 |
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author | Md. Helal Hossain Mohammad Asaduzzaman Chowdhury Nayem Hossain Md. Aminul Islam Md Hosne Mobarak Mehedi Hasan Julhas Khan |
author_facet | Md. Helal Hossain Mohammad Asaduzzaman Chowdhury Nayem Hossain Md. Aminul Islam Md Hosne Mobarak Mehedi Hasan Julhas Khan |
author_sort | Md. Helal Hossain |
collection | DOAJ |
description | Silicon-based lithium-ion battery negative electrodes represent one of graphite's most promising replacements. However, the enhanced capacity and unique Li+ storage method have raised the demands on the binder and other passive electrode components. For cycle stability, a sufficient carbonaceous matrix with silicon is needed. One of the most desirable anode materials for Li-ion batteries (LIBs) is Si, which has been noted for its exceptional volumetric and gravimetric qualities. Its affordability, abundance, and environmental safety stand out in particular. We assess the most recent improvements in the production of intercalation-type, conversion-type, and alloying-type anode materials in this work. After explaining the electrochemical reaction and failure, we reviewed several techniques for enhancing battery performance, including nanostructuring, alloying, building hierarchical structures, and employing the proper binders. Researchers will get the necessary information from this research work to conduct future research. |
first_indexed | 2024-03-08T06:53:40Z |
format | Article |
id | doaj.art-1b00bdfcfa8c4acab0d6a29ede332c4d |
institution | Directory Open Access Journal |
issn | 2666-8211 |
language | English |
last_indexed | 2024-03-08T06:53:40Z |
publishDate | 2024-03-01 |
publisher | Elsevier |
record_format | Article |
series | Chemical Engineering Journal Advances |
spelling | doaj.art-1b00bdfcfa8c4acab0d6a29ede332c4d2024-02-03T06:39:47ZengElsevierChemical Engineering Journal Advances2666-82112024-03-0117100588Advances on synthesis and performance of Li-Ion anode batteries-a reviewMd. Helal Hossain0Mohammad Asaduzzaman Chowdhury1Nayem Hossain2Md. Aminul Islam3Md Hosne Mobarak4Mehedi Hasan5Julhas Khan6Department of Mechanical Engineering, Dhaka University of Engineering and Technology (DUET), Gazipur, Gazipur 1707, BangladeshDepartment of Mechanical Engineering, Dhaka University of Engineering and Technology (DUET), Gazipur, Gazipur 1707, BangladeshDepartment of Mechanical Engineering, IUBAT-International University of Business Agriculture and Technology, Dhaka, Dhaka 1230, Bangladesh; Corresponding author.Department of Mechanical Engineering, IUBAT-International University of Business Agriculture and Technology, Dhaka, Dhaka 1230, BangladeshDepartment of Mechanical Engineering, IUBAT-International University of Business Agriculture and Technology, Dhaka, Dhaka 1230, BangladeshDepartment of Mechanical Engineering, IUBAT-International University of Business Agriculture and Technology, Dhaka, Dhaka 1230, BangladeshDepartment of Mechanical Engineering, IUBAT-International University of Business Agriculture and Technology, Dhaka, Dhaka 1230, BangladeshSilicon-based lithium-ion battery negative electrodes represent one of graphite's most promising replacements. However, the enhanced capacity and unique Li+ storage method have raised the demands on the binder and other passive electrode components. For cycle stability, a sufficient carbonaceous matrix with silicon is needed. One of the most desirable anode materials for Li-ion batteries (LIBs) is Si, which has been noted for its exceptional volumetric and gravimetric qualities. Its affordability, abundance, and environmental safety stand out in particular. We assess the most recent improvements in the production of intercalation-type, conversion-type, and alloying-type anode materials in this work. After explaining the electrochemical reaction and failure, we reviewed several techniques for enhancing battery performance, including nanostructuring, alloying, building hierarchical structures, and employing the proper binders. Researchers will get the necessary information from this research work to conduct future research.http://www.sciencedirect.com/science/article/pii/S2666821124000061Li-ion batteriesGraphiteElectrodeElectrochemical reactionNanostructureSilicon |
spellingShingle | Md. Helal Hossain Mohammad Asaduzzaman Chowdhury Nayem Hossain Md. Aminul Islam Md Hosne Mobarak Mehedi Hasan Julhas Khan Advances on synthesis and performance of Li-Ion anode batteries-a review Chemical Engineering Journal Advances Li-ion batteries Graphite Electrode Electrochemical reaction Nanostructure Silicon |
title | Advances on synthesis and performance of Li-Ion anode batteries-a review |
title_full | Advances on synthesis and performance of Li-Ion anode batteries-a review |
title_fullStr | Advances on synthesis and performance of Li-Ion anode batteries-a review |
title_full_unstemmed | Advances on synthesis and performance of Li-Ion anode batteries-a review |
title_short | Advances on synthesis and performance of Li-Ion anode batteries-a review |
title_sort | advances on synthesis and performance of li ion anode batteries a review |
topic | Li-ion batteries Graphite Electrode Electrochemical reaction Nanostructure Silicon |
url | http://www.sciencedirect.com/science/article/pii/S2666821124000061 |
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