Cargando…
A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+)
ZnMn(2)O(4) and Zn(1−x)Al(x)Mn(2)O(4) were synthesized by a spray drying process followed by an annealing treatment. Their structural and electrochemical characteristics were investigated by SEM, XRD, XPS, charge–discharge tests and EIS. XPS data indicate that the substitution of Al(3+) for Zn(2+) c...
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/PMC9078459/ https://www.ncbi.nlm.nih.gov/pubmed/35539097 http://dx.doi.org/10.1039/c8ra00310f |
_version_ | 1784702336698941440 |
---|---|
author | Zhu, Xianyu Quan, Jingbin Huang, Jichun Ma, Zheng Chen, Yixin Zhu, Decheng Ji, Chongxing Li, Decheng |
author_facet | Zhu, Xianyu Quan, Jingbin Huang, Jichun Ma, Zheng Chen, Yixin Zhu, Decheng Ji, Chongxing Li, Decheng |
author_sort | Zhu, Xianyu |
collection | PubMed |
description | ZnMn(2)O(4) and Zn(1−x)Al(x)Mn(2)O(4) were synthesized by a spray drying process followed by an annealing treatment. Their structural and electrochemical characteristics were investigated by SEM, XRD, XPS, charge–discharge tests and EIS. XPS data indicate that the substitution of Al(3+) for Zn(2+) causes manganese to be in a mixed valence state by a charge compensation mechanism. Moreover, the presence of this charge compensation significantly improves the electrochemical performance of Zn(1−x)Al(x)Mn(2)O(4), such as increasing the initial coulombic efficiency, stabilizing the cycleability as well as improving the rate capability. The sample with 2% Al doping shows the best performance, with a first cycle coulombic efficiency of 69.6% and a reversible capacity of 597.7 mA h g(−1) after 100 cycles. Even at the high current density of 1600 mA g(−1), it still retained a capacity of 558 mA h g(−1). |
format | Online Article Text |
id | pubmed-9078459 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90784592022-05-09 A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) Zhu, Xianyu Quan, Jingbin Huang, Jichun Ma, Zheng Chen, Yixin Zhu, Decheng Ji, Chongxing Li, Decheng RSC Adv Chemistry ZnMn(2)O(4) and Zn(1−x)Al(x)Mn(2)O(4) were synthesized by a spray drying process followed by an annealing treatment. Their structural and electrochemical characteristics were investigated by SEM, XRD, XPS, charge–discharge tests and EIS. XPS data indicate that the substitution of Al(3+) for Zn(2+) causes manganese to be in a mixed valence state by a charge compensation mechanism. Moreover, the presence of this charge compensation significantly improves the electrochemical performance of Zn(1−x)Al(x)Mn(2)O(4), such as increasing the initial coulombic efficiency, stabilizing the cycleability as well as improving the rate capability. The sample with 2% Al doping shows the best performance, with a first cycle coulombic efficiency of 69.6% and a reversible capacity of 597.7 mA h g(−1) after 100 cycles. Even at the high current density of 1600 mA g(−1), it still retained a capacity of 558 mA h g(−1). The Royal Society of Chemistry 2018-02-15 /pmc/articles/PMC9078459/ /pubmed/35539097 http://dx.doi.org/10.1039/c8ra00310f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Zhu, Xianyu Quan, Jingbin Huang, Jichun Ma, Zheng Chen, Yixin Zhu, Decheng Ji, Chongxing Li, Decheng A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title | A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title_full | A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title_fullStr | A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title_full_unstemmed | A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title_short | A new approach to improve the electrochemical performance of ZnMn(2)O(4) through a charge compensation mechanism using the substitution of Al(3+) for Zn(2+) |
title_sort | new approach to improve the electrochemical performance of znmn(2)o(4) through a charge compensation mechanism using the substitution of al(3+) for zn(2+) |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9078459/ https://www.ncbi.nlm.nih.gov/pubmed/35539097 http://dx.doi.org/10.1039/c8ra00310f |
work_keys_str_mv | AT zhuxianyu anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT quanjingbin anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT huangjichun anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT mazheng anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT chenyixin anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT zhudecheng anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT jichongxing anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT lidecheng anewapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT zhuxianyu newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT quanjingbin newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT huangjichun newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT mazheng newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT chenyixin newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT zhudecheng newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT jichongxing newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 AT lidecheng newapproachtoimprovetheelectrochemicalperformanceofznmn2o4throughachargecompensationmechanismusingthesubstitutionofal3forzn2 |