Cargando…

Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries

Tin-based anode materials have aroused interest due to their high capacities. Nevertheless, the volume expansion problem during lithium insertion/extraction processes has severely hindered their practical application. In particular, nano–micro hierarchical structure is attractive with the integrated...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Fengrong, Xu, Qi, Zheng, Baoping, Zhang, Jun, Wu, Zhenguo, Zhong, Yanjun, Chen, Yanxiao, Xiang, Wei, Zhong, Benhe, Guo, Xiaodong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049305/
https://www.ncbi.nlm.nih.gov/pubmed/35497454
http://dx.doi.org/10.1039/c9ra08897k
_version_ 1784696115176669184
author He, Fengrong
Xu, Qi
Zheng, Baoping
Zhang, Jun
Wu, Zhenguo
Zhong, Yanjun
Chen, Yanxiao
Xiang, Wei
Zhong, Benhe
Guo, Xiaodong
author_facet He, Fengrong
Xu, Qi
Zheng, Baoping
Zhang, Jun
Wu, Zhenguo
Zhong, Yanjun
Chen, Yanxiao
Xiang, Wei
Zhong, Benhe
Guo, Xiaodong
author_sort He, Fengrong
collection PubMed
description Tin-based anode materials have aroused interest due to their high capacities. Nevertheless, the volume expansion problem during lithium insertion/extraction processes has severely hindered their practical application. In particular, nano–micro hierarchical structure is attractive with the integrated advantages of nano-effect and high thermal stability of the microstructure. Herein, hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres were successfully synthesized by a facile glucose-assisted hydrothermal method, in which the glucose served as both morphology-control agent and carbon source. The hierarchical Sn/SnO nanosheets exhibit excellent electrochemical performances owing to the unique configuration and carbon coating. Specifically, a reversible high capacity of 2072.2 mA h g(−1) was observed at 100 mA g(−1). Further, 964.1 mA h g(−1) after 100 cycles at 100 mA g(−1) and 820.4 mA h g(−1) at 1000 mA g(−1) after 300 cycles could be obtained. Encouragingly, the Sn/SnO also presents certain sodium ion storage properties. This facile synthetic strategy may provide new insight into fabricating high-performance Sn-based anode materials combining the advantages of both structure and carbon coating.
format Online
Article
Text
id pubmed-9049305
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90493052022-04-29 Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries He, Fengrong Xu, Qi Zheng, Baoping Zhang, Jun Wu, Zhenguo Zhong, Yanjun Chen, Yanxiao Xiang, Wei Zhong, Benhe Guo, Xiaodong RSC Adv Chemistry Tin-based anode materials have aroused interest due to their high capacities. Nevertheless, the volume expansion problem during lithium insertion/extraction processes has severely hindered their practical application. In particular, nano–micro hierarchical structure is attractive with the integrated advantages of nano-effect and high thermal stability of the microstructure. Herein, hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres were successfully synthesized by a facile glucose-assisted hydrothermal method, in which the glucose served as both morphology-control agent and carbon source. The hierarchical Sn/SnO nanosheets exhibit excellent electrochemical performances owing to the unique configuration and carbon coating. Specifically, a reversible high capacity of 2072.2 mA h g(−1) was observed at 100 mA g(−1). Further, 964.1 mA h g(−1) after 100 cycles at 100 mA g(−1) and 820.4 mA h g(−1) at 1000 mA g(−1) after 300 cycles could be obtained. Encouragingly, the Sn/SnO also presents certain sodium ion storage properties. This facile synthetic strategy may provide new insight into fabricating high-performance Sn-based anode materials combining the advantages of both structure and carbon coating. The Royal Society of Chemistry 2020-02-06 /pmc/articles/PMC9049305/ /pubmed/35497454 http://dx.doi.org/10.1039/c9ra08897k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
He, Fengrong
Xu, Qi
Zheng, Baoping
Zhang, Jun
Wu, Zhenguo
Zhong, Yanjun
Chen, Yanxiao
Xiang, Wei
Zhong, Benhe
Guo, Xiaodong
Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title_full Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title_fullStr Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title_full_unstemmed Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title_short Synthesis of hierarchical Sn/SnO nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
title_sort synthesis of hierarchical sn/sno nanosheets assembled by carbon-coated hollow nanospheres as anode materials for lithium/sodium ion batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049305/
https://www.ncbi.nlm.nih.gov/pubmed/35497454
http://dx.doi.org/10.1039/c9ra08897k
work_keys_str_mv AT hefengrong synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT xuqi synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT zhengbaoping synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT zhangjun synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT wuzhenguo synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT zhongyanjun synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT chenyanxiao synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT xiangwei synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT zhongbenhe synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries
AT guoxiaodong synthesisofhierarchicalsnsnonanosheetsassembledbycarboncoatedhollownanospheresasanodematerialsforlithiumsodiumionbatteries