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Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review

The ever-increasing worldwide energy demand and the limited resources of fossil have forced the urgent adoption of renewable energy sources. Additionally, concerns over CO(2) emissions and potential increases in fuel prices have boosted technical efforts to make hybrid and electric vehicles more acc...

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Autores principales: Mahmud, Sharif Tasnim, Mia, Rony, Mahmud, Sakil, Sha, Sha, Zhang, Ruquan, Deng, Zhongmin, Yanilmaz, Meltem, Luo, Lei, Zhu, Jiadeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029743/
https://www.ncbi.nlm.nih.gov/pubmed/35457954
http://dx.doi.org/10.3390/nano12081246
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author Mahmud, Sharif Tasnim
Mia, Rony
Mahmud, Sakil
Sha, Sha
Zhang, Ruquan
Deng, Zhongmin
Yanilmaz, Meltem
Luo, Lei
Zhu, Jiadeng
author_facet Mahmud, Sharif Tasnim
Mia, Rony
Mahmud, Sakil
Sha, Sha
Zhang, Ruquan
Deng, Zhongmin
Yanilmaz, Meltem
Luo, Lei
Zhu, Jiadeng
author_sort Mahmud, Sharif Tasnim
collection PubMed
description The ever-increasing worldwide energy demand and the limited resources of fossil have forced the urgent adoption of renewable energy sources. Additionally, concerns over CO(2) emissions and potential increases in fuel prices have boosted technical efforts to make hybrid and electric vehicles more accessible to the public. Rechargeable batteries are undoubtedly a key player in this regard, especially lithium ion batteries (LIBs), which have high power capacity, a fast charge/discharge rate, and good cycle stability, while their further energy density improvement has been severely limited, because of the relatively low theoretical capacity of the graphite anode material which is mostly used. Among various high-capacity anode candidates, tin (II) sulfide (SnS(2)) has been attracted remarkable attention for high-energy LIBs due to its enormous resource and simplicity of synthesis, in addition to its high theoretical capacity. However, SnS(2) has poor intrinsic conductivity, a big volume transition, and a low initial Coulombic efficiency, resulting in a short lifespan. SnS(2)/carbon composites have been considered to be a most promising approach to addressing the abovementioned issues. Therefore, this review summarizes the current progress in the synthesis of SnS(2)/carbon anode materials and their Li-ion storage properties, with special attention to the developments in Li-based technology, attributed to its immense current importance and promising prospects. Finally, the existing challenges within this field are presented, and potential opportunities are discussed.
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spelling pubmed-90297432022-04-23 Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review Mahmud, Sharif Tasnim Mia, Rony Mahmud, Sakil Sha, Sha Zhang, Ruquan Deng, Zhongmin Yanilmaz, Meltem Luo, Lei Zhu, Jiadeng Nanomaterials (Basel) Review The ever-increasing worldwide energy demand and the limited resources of fossil have forced the urgent adoption of renewable energy sources. Additionally, concerns over CO(2) emissions and potential increases in fuel prices have boosted technical efforts to make hybrid and electric vehicles more accessible to the public. Rechargeable batteries are undoubtedly a key player in this regard, especially lithium ion batteries (LIBs), which have high power capacity, a fast charge/discharge rate, and good cycle stability, while their further energy density improvement has been severely limited, because of the relatively low theoretical capacity of the graphite anode material which is mostly used. Among various high-capacity anode candidates, tin (II) sulfide (SnS(2)) has been attracted remarkable attention for high-energy LIBs due to its enormous resource and simplicity of synthesis, in addition to its high theoretical capacity. However, SnS(2) has poor intrinsic conductivity, a big volume transition, and a low initial Coulombic efficiency, resulting in a short lifespan. SnS(2)/carbon composites have been considered to be a most promising approach to addressing the abovementioned issues. Therefore, this review summarizes the current progress in the synthesis of SnS(2)/carbon anode materials and their Li-ion storage properties, with special attention to the developments in Li-based technology, attributed to its immense current importance and promising prospects. Finally, the existing challenges within this field are presented, and potential opportunities are discussed. MDPI 2022-04-07 /pmc/articles/PMC9029743/ /pubmed/35457954 http://dx.doi.org/10.3390/nano12081246 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Mahmud, Sharif Tasnim
Mia, Rony
Mahmud, Sakil
Sha, Sha
Zhang, Ruquan
Deng, Zhongmin
Yanilmaz, Meltem
Luo, Lei
Zhu, Jiadeng
Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title_full Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title_fullStr Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title_full_unstemmed Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title_short Recent Developments of Tin (II) Sulfide/Carbon Composites for Achieving High-Performance Lithium Ion Batteries: A Critical Review
title_sort recent developments of tin (ii) sulfide/carbon composites for achieving high-performance lithium ion batteries: a critical review
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9029743/
https://www.ncbi.nlm.nih.gov/pubmed/35457954
http://dx.doi.org/10.3390/nano12081246
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