Repositorio Institucional
Repositorio Institucional
CONICET Digital
  • Inicio
  • EXPLORAR
    • AUTORES
    • DISCIPLINAS
    • COMUNIDADES
  • Estadísticas
  • Novedades
    • Noticias
    • Boletines
  • Ayuda
    • General
    • Datos de investigación
  • Acerca de
    • CONICET Digital
    • Equipo
    • Red Federal
  • Contacto
JavaScript is disabled for your browser. Some features of this site may not work without it.
  • INFORMACIÓN GENERAL
  • RESUMEN
  • ESTADISTICAS
 
Artículo

Effect of co-precipitation and solid-state reaction synthesis methods on lithium-rich cathodes Li1.2Ni0.2Mn0.6O2

Rodríguez Carrillo, Augusto ManuelIcon ; Sanservino, Miguel AngelIcon ; Gómez, SofíaIcon ; Ortiz, Mariela GiselaIcon ; Thomas, Jorge EnriqueIcon ; Visintin, ArnaldoIcon
Fecha de publicación: 07/2022
Editorial: Springer
Revista: Journal of Solid State Electrochemistry (print)
ISSN: 1432-8488
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Físico-Química, Ciencia de los Polímeros, Electroquímica

Resumen

Lithium-rich oxides (Li1.2Ni0.2Mn0.6O2) were obtained by two synthesis routes: co-precipitation method and solid-state reaction. Both materials showed a high degree of crystallinity, and XRD analysis revealed intense and well-defined signals corresponding to the R3m and C2/m space groups of these types of compounds, with a difference in the cationic order in the hexagonal structure layers. The cycling performances showed an initial discharge capacity of 200 mAh g−1 from the co-precipitated material, against the 150 mAh g−1 obtained from the solid-state reaction route but, unlike the large drop in the discharge capacity of the co-precipitated material after 160 cycles, the material obtained by solid-state reaction provided a slightly constant discharge capacity of ⁓120 mAh g−1 throughout cycling. The high initial discharge capacity of the co-precipitated material may be associated with the activation of the Li2MnO3 phase cycled at 0.2 C between 2.0–4.8 V and 2.0–5.2 V, the better cationic order and wider space between the layers of the LiMO2 phase. Therefore, the electrochemical performance could be directly related to those structural characteristics obtained thorough the selected synthetic procedures.
Palabras clave: CATHODE , ELECTROCHEMICAL PERFORMANCE , LI1.2NI0.2MN0.6O2 , LITHIUM-ION BATTERY , LITHIUM-RICH OXIDES , SYNTHESIS METHOD
Ver el registro completo
 
Archivos asociados
Thumbnail
 
Tamaño: 4.057Mb
Formato: PDF
.
Descargar
Licencia
info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/202456
URL: https://link.springer.com/article/10.1007/s10008-022-05258-z
DOI: https://doi.org/10.1007/s10008-022-05258-z
Colecciones
Articulos(INIFTA)
Articulos de INST.DE INV.FISICOQUIMICAS TEORICAS Y APLIC.
Articulos(SEDE CENTRAL)
Articulos de SEDE CENTRAL
Citación
Rodríguez Carrillo, Augusto Manuel; Sanservino, Miguel Angel; Gómez, Sofía; Ortiz, Mariela Gisela; Thomas, Jorge Enrique; et al.; Effect of co-precipitation and solid-state reaction synthesis methods on lithium-rich cathodes Li1.2Ni0.2Mn0.6O2; Springer; Journal of Solid State Electrochemistry (print); 26; 10; 7-2022; 2315-2328
Compartir
Altmétricas
 

Enviar por e-mail
Separar cada destinatario (hasta 5) con punto y coma.
  • Facebook
  • X Conicet Digital
  • Instagram
  • YouTube
  • Sound Cloud
  • LinkedIn

Los contenidos del CONICET están licenciados bajo Creative Commons Reconocimiento 2.5 Argentina License

https://www.conicet.gov.ar/ - CONICET

Inicio

Explorar

  • Autores
  • Disciplinas
  • Comunidades

Estadísticas

Novedades

  • Noticias
  • Boletines

Ayuda

Acerca de

  • CONICET Digital
  • Equipo
  • Red Federal

Contacto

Godoy Cruz 2290 (C1425FQB) CABA – República Argentina – Tel: +5411 4899-5400 repositorio@conicet.gov.ar
TÉRMINOS Y CONDICIONES