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Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives

The maximally disordered (MD) phases with the general formula Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) are formed with partial substitution of Y by Pr and Sb by Sn or Pb in the binary Y(5)Sb(3) compound. During the electrochemical lithiation and sodiation, the formation of Y(5-x)Pr(x)Sb(3-y)M(y)Li(z) and...

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Autores principales: Pavlyuk, Volodymyr, Ciesielski, Wojciech, Pavlyuk, Nazar, Kulawik, Damian, Balińska, Agnieszka, Kluziak, Karolina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348188/
https://www.ncbi.nlm.nih.gov/pubmed/34361525
http://dx.doi.org/10.3390/ma14154331
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author Pavlyuk, Volodymyr
Ciesielski, Wojciech
Pavlyuk, Nazar
Kulawik, Damian
Balińska, Agnieszka
Kluziak, Karolina
author_facet Pavlyuk, Volodymyr
Ciesielski, Wojciech
Pavlyuk, Nazar
Kulawik, Damian
Balińska, Agnieszka
Kluziak, Karolina
author_sort Pavlyuk, Volodymyr
collection PubMed
description The maximally disordered (MD) phases with the general formula Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) are formed with partial substitution of Y by Pr and Sb by Sn or Pb in the binary Y(5)Sb(3) compound. During the electrochemical lithiation and sodiation, the formation of Y(5-x)Pr(x)Sb(3-y)M(y)Li(z) and Y(5−x)Pr(x)Sb(3−y)M(y)Na(z) maximally disordered–high entropy intermetallic phases (MD-HEIP), as the result of insertion of Li/Na into octahedral voids, were observed. Carbon nanotubes (CNT) are an effective additive to improve the cycle stability of the Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) anodes for lithium-ion (LIBs) and sodium-ion batteries (SIBs). Modification of Y(5−x)Pr(x)Sb(3−y)Sn(y) alloys by carbon nanotubes allowed us to significantly increase the discharge capacity of both types of batteries, which reaches 280 mAh · g(−1) (for LIBs) and 160 mAh · g(−1) (for SIBs), respectively. For Y(5−x)PrxSb(3−y)Pb(y) alloys in which antimony is replaced by lead, these capacities are slightly smaller and are 270 mAh · g(−1) (for LIBs) and 155 mAh · g(−1) (for SIBs), respectively. Results show that structure disordering and CNT additives could increase the electrode capacities up to 30% for LIBs and up to 25% for SIBs.
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spelling pubmed-83481882021-08-08 Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives Pavlyuk, Volodymyr Ciesielski, Wojciech Pavlyuk, Nazar Kulawik, Damian Balińska, Agnieszka Kluziak, Karolina Materials (Basel) Article The maximally disordered (MD) phases with the general formula Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) are formed with partial substitution of Y by Pr and Sb by Sn or Pb in the binary Y(5)Sb(3) compound. During the electrochemical lithiation and sodiation, the formation of Y(5-x)Pr(x)Sb(3-y)M(y)Li(z) and Y(5−x)Pr(x)Sb(3−y)M(y)Na(z) maximally disordered–high entropy intermetallic phases (MD-HEIP), as the result of insertion of Li/Na into octahedral voids, were observed. Carbon nanotubes (CNT) are an effective additive to improve the cycle stability of the Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) anodes for lithium-ion (LIBs) and sodium-ion batteries (SIBs). Modification of Y(5−x)Pr(x)Sb(3−y)Sn(y) alloys by carbon nanotubes allowed us to significantly increase the discharge capacity of both types of batteries, which reaches 280 mAh · g(−1) (for LIBs) and 160 mAh · g(−1) (for SIBs), respectively. For Y(5−x)PrxSb(3−y)Pb(y) alloys in which antimony is replaced by lead, these capacities are slightly smaller and are 270 mAh · g(−1) (for LIBs) and 155 mAh · g(−1) (for SIBs), respectively. Results show that structure disordering and CNT additives could increase the electrode capacities up to 30% for LIBs and up to 25% for SIBs. MDPI 2021-08-03 /pmc/articles/PMC8348188/ /pubmed/34361525 http://dx.doi.org/10.3390/ma14154331 Text en © 2021 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
Pavlyuk, Volodymyr
Ciesielski, Wojciech
Pavlyuk, Nazar
Kulawik, Damian
Balińska, Agnieszka
Kluziak, Karolina
Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title_full Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title_fullStr Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title_full_unstemmed Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title_short Enhancement of Y(5−x)Pr(x)Sb(3−y)M(y) (M = Sn, Pb) Electrodes for Lithium- and Sodium-Ion Batteries by Structure Disordering and CNTs Additives
title_sort enhancement of y(5−x)pr(x)sb(3−y)m(y) (m = sn, pb) electrodes for lithium- and sodium-ion batteries by structure disordering and cnts additives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348188/
https://www.ncbi.nlm.nih.gov/pubmed/34361525
http://dx.doi.org/10.3390/ma14154331
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