Cargando…

Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries

Lithium sulfur batteries are suitable for drones due to their high gravimetric energy density (2600 Wh/kg of sulfur). However, on the cathode side, high specific capacity with high sulfur loading (high areal capacity) is challenging due to the poor conductivity of sulfur. Shuttling of Li-sulfide spe...

Descripción completa

Detalles Bibliográficos
Autores principales: Sawada, Shunsuke, Yoshida, Hideki, Luski, Shalom, Markevich, Elena, Salitra, Gregory, Elias, Yuval, Aurbach, Doron
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10305279/
https://www.ncbi.nlm.nih.gov/pubmed/37375123
http://dx.doi.org/10.3390/molecules28124568
_version_ 1785065696058671104
author Sawada, Shunsuke
Yoshida, Hideki
Luski, Shalom
Markevich, Elena
Salitra, Gregory
Elias, Yuval
Aurbach, Doron
author_facet Sawada, Shunsuke
Yoshida, Hideki
Luski, Shalom
Markevich, Elena
Salitra, Gregory
Elias, Yuval
Aurbach, Doron
author_sort Sawada, Shunsuke
collection PubMed
description Lithium sulfur batteries are suitable for drones due to their high gravimetric energy density (2600 Wh/kg of sulfur). However, on the cathode side, high specific capacity with high sulfur loading (high areal capacity) is challenging due to the poor conductivity of sulfur. Shuttling of Li-sulfide species between the sulfur cathode and lithium anode also limits specific capacity. Sulfur-carbon composite active materials with encapsulated sulfur address both issues but require expensive processing and have low sulfur content with limited areal capacity. Proper encapsulation of sulfur in carbonaceous structures along with active additives in solution may largely mitigate shuttling, resulting in cells with improved energy density at relatively low cost. Here, composite current collectors, selected binders, and carbonaceous matrices impregnated with an active mass were used to award stable sulfur cathodes with high areal specific capacity. All three components are necessary to reach a high sulfur loading of 3.8 mg/cm(2) with a specific/areal capacity of 805 mAh/g/2.2 mAh/cm(2). Good adhesion between the carbon-coated Al foil current collectors and the composite sulfur impregnated carbon matrices is mandatory for stable electrodes. Swelling of the binders influenced cycling retention as electroconductivity dominated the cycling performance of the Li-S cells comprising cathodes with high sulfur loading. Composite electrodes based on carbonaceous matrices in which sulfur is impregnated at high specific loading and non-swelling binders that maintain the integrated structure of the composite electrodes are important for strong performance. This basic design can be mass produced and optimized to yield practical devices.
format Online
Article
Text
id pubmed-10305279
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103052792023-06-29 Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries Sawada, Shunsuke Yoshida, Hideki Luski, Shalom Markevich, Elena Salitra, Gregory Elias, Yuval Aurbach, Doron Molecules Article Lithium sulfur batteries are suitable for drones due to their high gravimetric energy density (2600 Wh/kg of sulfur). However, on the cathode side, high specific capacity with high sulfur loading (high areal capacity) is challenging due to the poor conductivity of sulfur. Shuttling of Li-sulfide species between the sulfur cathode and lithium anode also limits specific capacity. Sulfur-carbon composite active materials with encapsulated sulfur address both issues but require expensive processing and have low sulfur content with limited areal capacity. Proper encapsulation of sulfur in carbonaceous structures along with active additives in solution may largely mitigate shuttling, resulting in cells with improved energy density at relatively low cost. Here, composite current collectors, selected binders, and carbonaceous matrices impregnated with an active mass were used to award stable sulfur cathodes with high areal specific capacity. All three components are necessary to reach a high sulfur loading of 3.8 mg/cm(2) with a specific/areal capacity of 805 mAh/g/2.2 mAh/cm(2). Good adhesion between the carbon-coated Al foil current collectors and the composite sulfur impregnated carbon matrices is mandatory for stable electrodes. Swelling of the binders influenced cycling retention as electroconductivity dominated the cycling performance of the Li-S cells comprising cathodes with high sulfur loading. Composite electrodes based on carbonaceous matrices in which sulfur is impregnated at high specific loading and non-swelling binders that maintain the integrated structure of the composite electrodes are important for strong performance. This basic design can be mass produced and optimized to yield practical devices. MDPI 2023-06-06 /pmc/articles/PMC10305279/ /pubmed/37375123 http://dx.doi.org/10.3390/molecules28124568 Text en © 2023 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 Article
Sawada, Shunsuke
Yoshida, Hideki
Luski, Shalom
Markevich, Elena
Salitra, Gregory
Elias, Yuval
Aurbach, Doron
Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title_full Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title_fullStr Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title_full_unstemmed Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title_short Stable High-Capacity Elemental Sulfur Cathodes with Simple Process for Lithium Sulfur Batteries
title_sort stable high-capacity elemental sulfur cathodes with simple process for lithium sulfur batteries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10305279/
https://www.ncbi.nlm.nih.gov/pubmed/37375123
http://dx.doi.org/10.3390/molecules28124568
work_keys_str_mv AT sawadashunsuke stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT yoshidahideki stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT luskishalom stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT markevichelena stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT salitragregory stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT eliasyuval stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries
AT aurbachdoron stablehighcapacityelementalsulfurcathodeswithsimpleprocessforlithiumsulfurbatteries