Cargando…
Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling
Na(3)V(2)(PO(4))(3) (NVP) is regarded as a promising cathode material for sustainable energy storage applications. Here we present an efficient method to synthesize off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C (x = 0–0.10) nanocomposites with excellent high-rate and long-life performance for sodium...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080805/ https://www.ncbi.nlm.nih.gov/pubmed/35541691 http://dx.doi.org/10.1039/c8ra02843e |
_version_ | 1784702873347555328 |
---|---|
author | Sun, Pingping Wang, Yuanting Wang, Xiuzhen Xu, Qingyu Fan, Qi Sun, Yueming |
author_facet | Sun, Pingping Wang, Yuanting Wang, Xiuzhen Xu, Qingyu Fan, Qi Sun, Yueming |
author_sort | Sun, Pingping |
collection | PubMed |
description | Na(3)V(2)(PO(4))(3) (NVP) is regarded as a promising cathode material for sustainable energy storage applications. Here we present an efficient method to synthesize off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C (x = 0–0.10) nanocomposites with excellent high-rate and long-life performance for sodium-ion batteries by high-energy ball milling. It is found that Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites with x = 0.05 (NVP-0.05) exhibit the most excellent performance. When cycled at a rate of 1C in the range of 2.3–3.9 V, the initial discharge capacity of NVP-0.05 is 112.4 mA h g(−1), which is about 96% of its theoretical value (117.6 mA h g(−1)). Even at 20C, it still delivers a discharge capacity of 92.3 mA h g(−1) (79% of the theoretical capacity). The specific capacity of NVP-0.05 is as high as 100.7 mA h g(−1) after 500 cycles at 5C, which maintains 95% of its initial value (106 mA h g(−1)). The significantly improved electrochemical performance of NVP-0.05 is attributed to the decrease of internal resistance and increase of the Na(+) ion diffusion coefficient. |
format | Online Article Text |
id | pubmed-9080805 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90808052022-05-09 Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling Sun, Pingping Wang, Yuanting Wang, Xiuzhen Xu, Qingyu Fan, Qi Sun, Yueming RSC Adv Chemistry Na(3)V(2)(PO(4))(3) (NVP) is regarded as a promising cathode material for sustainable energy storage applications. Here we present an efficient method to synthesize off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C (x = 0–0.10) nanocomposites with excellent high-rate and long-life performance for sodium-ion batteries by high-energy ball milling. It is found that Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites with x = 0.05 (NVP-0.05) exhibit the most excellent performance. When cycled at a rate of 1C in the range of 2.3–3.9 V, the initial discharge capacity of NVP-0.05 is 112.4 mA h g(−1), which is about 96% of its theoretical value (117.6 mA h g(−1)). Even at 20C, it still delivers a discharge capacity of 92.3 mA h g(−1) (79% of the theoretical capacity). The specific capacity of NVP-0.05 is as high as 100.7 mA h g(−1) after 500 cycles at 5C, which maintains 95% of its initial value (106 mA h g(−1)). The significantly improved electrochemical performance of NVP-0.05 is attributed to the decrease of internal resistance and increase of the Na(+) ion diffusion coefficient. The Royal Society of Chemistry 2018-06-04 /pmc/articles/PMC9080805/ /pubmed/35541691 http://dx.doi.org/10.1039/c8ra02843e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Sun, Pingping Wang, Yuanting Wang, Xiuzhen Xu, Qingyu Fan, Qi Sun, Yueming Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title | Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title_full | Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title_fullStr | Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title_full_unstemmed | Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title_short | Off-stoichiometric Na(3−3x)V(2+x)(PO(4))(3)/C nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
title_sort | off-stoichiometric na(3−3x)v(2+x)(po(4))(3)/c nanocomposites as cathode materials for high-performance sodium-ion batteries prepared by high-energy ball milling |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080805/ https://www.ncbi.nlm.nih.gov/pubmed/35541691 http://dx.doi.org/10.1039/c8ra02843e |
work_keys_str_mv | AT sunpingping offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling AT wangyuanting offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling AT wangxiuzhen offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling AT xuqingyu offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling AT fanqi offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling AT sunyueming offstoichiometricna33xv2xpo43cnanocompositesascathodematerialsforhighperformancesodiumionbatteriespreparedbyhighenergyballmilling |