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Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries

Electrodes that offer quick ion transport, a large surface area, and excellent electrical conductivity support high performance aqueous rechargeable lithium batteries. LiFePO(4) (LFP) nanoparticles have been successfully coated with carbon by a chemical sol–gel route, and assembled on graphite by an...

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Autores principales: Duan, Wenyuan, Husain, Mubashir, Li, Yanlin, Lashari, Najeeb ur Rehman, Yang, Yuhuan, Ma, Cheng, Zhao, Yuzhen, Li, Xiaorui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445526/
https://www.ncbi.nlm.nih.gov/pubmed/37622017
http://dx.doi.org/10.1039/d3ra04143c
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author Duan, Wenyuan
Husain, Mubashir
Li, Yanlin
Lashari, Najeeb ur Rehman
Yang, Yuhuan
Ma, Cheng
Zhao, Yuzhen
Li, Xiaorui
author_facet Duan, Wenyuan
Husain, Mubashir
Li, Yanlin
Lashari, Najeeb ur Rehman
Yang, Yuhuan
Ma, Cheng
Zhao, Yuzhen
Li, Xiaorui
author_sort Duan, Wenyuan
collection PubMed
description Electrodes that offer quick ion transport, a large surface area, and excellent electrical conductivity support high performance aqueous rechargeable lithium batteries. LiFePO(4) (LFP) nanoparticles have been successfully coated with carbon by a chemical sol–gel route, and assembled on graphite by an ultrasonication method to acquire LFP/C/graphite. This LFP/C/graphite composite exhibits exceptional electrochemical performance at various current densities (1C to 20C). LFP/C/graphite delivers better capacity that is higher than that of LFP/C particles and high stability after 60 cycles at a current density of 1C for aqueous rechargeable lithium batteries as a cathode material. The graphite serves as a good volume buffer in improving the lithium performance of LFP/C/graphite during the charge/discharge process. The LFP/C/graphite composite shows high rate capability at 20C that returned to the initial capacity at 1C after 25 cycles with coulombic efficiency of 97%. Therefore, this effort presents a super low-cost route to fabricate high performance cathode materials in aqueous rechargeable lithium batteries and other energy storage appliances.
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spelling pubmed-104455262023-08-24 Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries Duan, Wenyuan Husain, Mubashir Li, Yanlin Lashari, Najeeb ur Rehman Yang, Yuhuan Ma, Cheng Zhao, Yuzhen Li, Xiaorui RSC Adv Chemistry Electrodes that offer quick ion transport, a large surface area, and excellent electrical conductivity support high performance aqueous rechargeable lithium batteries. LiFePO(4) (LFP) nanoparticles have been successfully coated with carbon by a chemical sol–gel route, and assembled on graphite by an ultrasonication method to acquire LFP/C/graphite. This LFP/C/graphite composite exhibits exceptional electrochemical performance at various current densities (1C to 20C). LFP/C/graphite delivers better capacity that is higher than that of LFP/C particles and high stability after 60 cycles at a current density of 1C for aqueous rechargeable lithium batteries as a cathode material. The graphite serves as a good volume buffer in improving the lithium performance of LFP/C/graphite during the charge/discharge process. The LFP/C/graphite composite shows high rate capability at 20C that returned to the initial capacity at 1C after 25 cycles with coulombic efficiency of 97%. Therefore, this effort presents a super low-cost route to fabricate high performance cathode materials in aqueous rechargeable lithium batteries and other energy storage appliances. The Royal Society of Chemistry 2023-08-23 /pmc/articles/PMC10445526/ /pubmed/37622017 http://dx.doi.org/10.1039/d3ra04143c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Duan, Wenyuan
Husain, Mubashir
Li, Yanlin
Lashari, Najeeb ur Rehman
Yang, Yuhuan
Ma, Cheng
Zhao, Yuzhen
Li, Xiaorui
Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title_full Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title_fullStr Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title_full_unstemmed Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title_short Enhanced charge transport properties of an LFP/C/graphite composite as a cathode material for aqueous rechargeable lithium batteries
title_sort enhanced charge transport properties of an lfp/c/graphite composite as a cathode material for aqueous rechargeable lithium batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10445526/
https://www.ncbi.nlm.nih.gov/pubmed/37622017
http://dx.doi.org/10.1039/d3ra04143c
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