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dc.contributor.author
Zubair, Usman  
dc.contributor.author
Jori, Khalil  
dc.contributor.author
Thomas, Jorge Enrique  
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Amici, Julia  
dc.contributor.author
Francia, Carlotta  
dc.contributor.author
Bodoardo, Silvia  
dc.date.available
2024-03-12T10:50:58Z  
dc.date.issued
2023-10  
dc.identifier.citation
Zubair, Usman; Jori, Khalil; Thomas, Jorge Enrique; Amici, Julia; Francia, Carlotta; et al.; Electrodeposited heterostructured manganese oxides on carbonized clothes for enhanced lithium polysulfides conversion as free-standing sulfur cathodes; Elsevier Science; Journal of Power Sources; 580; 10-2023; 1-13  
dc.identifier.issn
0378-7753  
dc.identifier.uri
http://hdl.handle.net/11336/230119  
dc.description.abstract
Various metal oxides are investigated to catalyse lithium polysulfides (LiPS) conversion to promote the surface-bound insoluble intermediates and limit the LiPS shuttle. Herein, an effective methodology is reported to enhance LiPS catalytic conversion by applying electrodeposited hybrid phase composite films of manganese oxide (MnOx) on carbonized cotton cloth. Synergistic effects of porous carbon fabric with remnant lumen and high interfacial MnOx composite film of nanoflakes greatly contribute towards freestanding high-loaded sulfur cathodes. Various MnOx phases are realized by controlled annealing of MnOOH electrodeposited nanoflakes on carbon cloth. Oxygen deficient phases especially active interfaces among various phases are proposed to accelerate the LiPS oxidation to polythionate complexes that can interact with LiPS to assist their onsite conversion into sulfides. Pristine and LiPS interacted deposited films are investigated by X-ray photoelectron spectra and X-ray absorption spectra. The cathodes bearing high oxygen-deficient manganese oxide nanoflakes achieve high initial discharge capacity of 1153.7 mA h g−1 at 0.1 C and high reversible capacity of 824 mA h g−1 at 0.5 C over 200 cycles at sulfur areal loading of 5 mg cm−2, while initial discharge capacity of 1085.9 mA h g−1 and reversible capacity of 410 mA h g−1 are obtained for MnO2 rich heterostructure film.  
dc.format
application/pdf  
dc.language.iso
eng  
dc.publisher
Elsevier Science  
dc.rights
info:eu-repo/semantics/openAccess  
dc.rights.uri
https://creativecommons.org/licenses/by-nc-nd/2.5/ar/  
dc.subject
LI-S BATTERY  
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MANGANESE OXIDE  
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OXYGEN VACANCIES  
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POLYSULFIDES REDOX  
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SURFACE ENGINEERING  
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SURFACE-BOUND INSOLUBLE INTERMEDIATES  
dc.subject.classification
Físico-Química, Ciencia de los Polímeros, Electroquímica  
dc.subject.classification
Ciencias Químicas  
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CIENCIAS NATURALES Y EXACTAS  
dc.title
Electrodeposited heterostructured manganese oxides on carbonized clothes for enhanced lithium polysulfides conversion as free-standing sulfur cathodes  
dc.type
info:eu-repo/semantics/article  
dc.type
info:ar-repo/semantics/artículo  
dc.type
info:eu-repo/semantics/publishedVersion  
dc.date.updated
2024-03-11T11:40:40Z  
dc.journal.volume
580  
dc.journal.pagination
1-13  
dc.journal.pais
Países Bajos  
dc.journal.ciudad
Amsterdam  
dc.description.fil
Fil: Zubair, Usman. Politecnico di Torino; Italia  
dc.description.fil
Fil: Jori, Khalil. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - La Plata. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas. Universidad Nacional de La Plata. Facultad de Ciencias Exactas. Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas; Argentina  
dc.description.fil
Fil: Thomas, Jorge Enrique. YPF - Tecnología; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentina  
dc.description.fil
Fil: Amici, Julia. Politecnico di Torino; Italia  
dc.description.fil
Fil: Francia, Carlotta. Politecnico di Torino; Italia  
dc.description.fil
Fil: Bodoardo, Silvia. Politecnico di Torino; Italia  
dc.journal.title
Journal of Power Sources  
dc.relation.alternativeid
info:eu-repo/semantics/altIdentifier/doi/http://dx.doi.org/10.1016/j.jpowsour.2023.233457