Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates

Lithium-sulfur batteries (LSBs) are receiving extensive attention because of their high theoretical energy density. However, practical applications of LSBs are still hindered by their rapid capacity decay and short cycle life, especially at high rates. Herein, a highly N-doped (≈13.42 at %) hierarch...

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Main Authors: Zhen, Mengmeng, Wang, Juan, Wang, Xin, Wang, Cheng
Other Authors: School of Chemical and Biomedical Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/139423
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1394232020-05-19T07:32:35Z Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates Zhen, Mengmeng Wang, Juan Wang, Xin Wang, Cheng School of Chemical and Biomedical Engineering Engineering::Chemical engineering Carbon Chemical Adsorption Lithium-sulfur batteries (LSBs) are receiving extensive attention because of their high theoretical energy density. However, practical applications of LSBs are still hindered by their rapid capacity decay and short cycle life, especially at high rates. Herein, a highly N-doped (≈13.42 at %) hierarchical carbon sponge (HNCS) with strong chemical adsorption for lithium polysulfide is fabricated through a simple sol-gel route followed by carbonization. Upon using the HNCS as the sulfur host material in the cathode and an HNCS-coated separator, the battery delivers an excellent cycling stability with high specific capacities of 424 and 326 mA h g-1 and low capacity fading rates of 0.033 % and 0.030 % per cycle after 1000 cycles under high rates of 5 and 10 C, respectively, which are superior to those of other reported carbonaceous materials. These impressive cycling performances indicate that such a battery could promote the practical application prospects of LSBs. 2020-05-19T07:32:35Z 2020-05-19T07:32:35Z 2018 Journal Article Zhen, M., Wang, J., Wang, X., & Wang, C. (2018). Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates. Chemistry - A European Journal, 24(22), 5860-5867. doi:10.1002/chem.201705515 0947-6539 https://hdl.handle.net/10356/139423 10.1002/chem.201705515 29336071 2-s2.0-85044190593 22 24 5860 5867 en Chemistry - A European Journal This is the accepted version of the following article: Zhen, M., Wang, J., Wang, X., & Wang, C. (2018). Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates. Chemistry - A European Journal, 24(22), 5860-5867, which has been published in final form at dx.doi.org/10.1002/chem.201705515. This article may be used for non-commercial purposes in accordance with the Wiley Self-Archiving Policy [https://authorservices.wiley.com/authorresources/Journal-Authors/licensing/self-archiving.html].
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Chemical engineering
Carbon
Chemical Adsorption
spellingShingle Engineering::Chemical engineering
Carbon
Chemical Adsorption
Zhen, Mengmeng
Wang, Juan
Wang, Xin
Wang, Cheng
Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
description Lithium-sulfur batteries (LSBs) are receiving extensive attention because of their high theoretical energy density. However, practical applications of LSBs are still hindered by their rapid capacity decay and short cycle life, especially at high rates. Herein, a highly N-doped (≈13.42 at %) hierarchical carbon sponge (HNCS) with strong chemical adsorption for lithium polysulfide is fabricated through a simple sol-gel route followed by carbonization. Upon using the HNCS as the sulfur host material in the cathode and an HNCS-coated separator, the battery delivers an excellent cycling stability with high specific capacities of 424 and 326 mA h g-1 and low capacity fading rates of 0.033 % and 0.030 % per cycle after 1000 cycles under high rates of 5 and 10 C, respectively, which are superior to those of other reported carbonaceous materials. These impressive cycling performances indicate that such a battery could promote the practical application prospects of LSBs.
author2 School of Chemical and Biomedical Engineering
author_facet School of Chemical and Biomedical Engineering
Zhen, Mengmeng
Wang, Juan
Wang, Xin
Wang, Cheng
format Article
author Zhen, Mengmeng
Wang, Juan
Wang, Xin
Wang, Cheng
author_sort Zhen, Mengmeng
title Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
title_short Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
title_full Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
title_fullStr Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
title_full_unstemmed Hierarchical N-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
title_sort hierarchical n-rich carbon sponge with excellent cycling performance for lithium-sulfur battery at high rates
publishDate 2020
url https://hdl.handle.net/10356/139423
_version_ 1681056094292541440