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3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries

The mechanism of Li–O(2) batteries is based on the reactions of lithium ions and oxygen, which hold a theoretical higher energy density of approximately 3500 W h kg(−1). In order to improve the practical specific capacity and cycling performance of Li–O(2) batteries, a catalytically active mechanica...

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Autores principales: Jiang, Zhuo-Liang, Xie, Jing, Luo, Cong-Shan, Gao, Meng-Yang, Guo, Huan-Liang, Wei, Mo-Han, Zhou, Hong-Jun, Sun, Hui
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/PMC9081549/
https://www.ncbi.nlm.nih.gov/pubmed/35540114
http://dx.doi.org/10.1039/c8ra03325k
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author Jiang, Zhuo-Liang
Xie, Jing
Luo, Cong-Shan
Gao, Meng-Yang
Guo, Huan-Liang
Wei, Mo-Han
Zhou, Hong-Jun
Sun, Hui
author_facet Jiang, Zhuo-Liang
Xie, Jing
Luo, Cong-Shan
Gao, Meng-Yang
Guo, Huan-Liang
Wei, Mo-Han
Zhou, Hong-Jun
Sun, Hui
author_sort Jiang, Zhuo-Liang
collection PubMed
description The mechanism of Li–O(2) batteries is based on the reactions of lithium ions and oxygen, which hold a theoretical higher energy density of approximately 3500 W h kg(−1). In order to improve the practical specific capacity and cycling performance of Li–O(2) batteries, a catalytically active mechanically robust air cathode is required. In this work, we synthesized a freestanding catalytic cathode with RuO(2) decorated 3D web Co(3)O(4) nanowires on nickel foam. When the specific capacity was limited at 500 mA h g(−1), the RuO(2)–Co(3)O(4)/NiF had a stable cycling life of up to 122 times. The outstanding performance can be primarily attributed to the robust freestanding Co(3)O(4) nanowires with RuO(2) loading. The unique 3D web nanowire structure provides a large surface for Li(2)O(2) growth and RuO(2) nanoparticle loading, and the RuO(2) nanoparticles help to promote the round trip deposition and decomposition of Li(2)O(2), therefore enhancing the cycling behavior. This result indicates the superiority of RuO(2)–Co(3)O(4)/NiF as a freestanding highly efficient catalytic cathode for Li–O(2) batteries.
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spelling pubmed-90815492022-05-09 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries Jiang, Zhuo-Liang Xie, Jing Luo, Cong-Shan Gao, Meng-Yang Guo, Huan-Liang Wei, Mo-Han Zhou, Hong-Jun Sun, Hui RSC Adv Chemistry The mechanism of Li–O(2) batteries is based on the reactions of lithium ions and oxygen, which hold a theoretical higher energy density of approximately 3500 W h kg(−1). In order to improve the practical specific capacity and cycling performance of Li–O(2) batteries, a catalytically active mechanically robust air cathode is required. In this work, we synthesized a freestanding catalytic cathode with RuO(2) decorated 3D web Co(3)O(4) nanowires on nickel foam. When the specific capacity was limited at 500 mA h g(−1), the RuO(2)–Co(3)O(4)/NiF had a stable cycling life of up to 122 times. The outstanding performance can be primarily attributed to the robust freestanding Co(3)O(4) nanowires with RuO(2) loading. The unique 3D web nanowire structure provides a large surface for Li(2)O(2) growth and RuO(2) nanoparticle loading, and the RuO(2) nanoparticles help to promote the round trip deposition and decomposition of Li(2)O(2), therefore enhancing the cycling behavior. This result indicates the superiority of RuO(2)–Co(3)O(4)/NiF as a freestanding highly efficient catalytic cathode for Li–O(2) batteries. The Royal Society of Chemistry 2018-06-27 /pmc/articles/PMC9081549/ /pubmed/35540114 http://dx.doi.org/10.1039/c8ra03325k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Jiang, Zhuo-Liang
Xie, Jing
Luo, Cong-Shan
Gao, Meng-Yang
Guo, Huan-Liang
Wei, Mo-Han
Zhou, Hong-Jun
Sun, Hui
3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title_full 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title_fullStr 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title_full_unstemmed 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title_short 3D web freestanding RuO(2)–Co(3)O(4) nanowires on Ni foam as highly efficient cathode catalysts for Li–O(2) batteries
title_sort 3d web freestanding ruo(2)–co(3)o(4) nanowires on ni foam as highly efficient cathode catalysts for li–o(2) batteries
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081549/
https://www.ncbi.nlm.nih.gov/pubmed/35540114
http://dx.doi.org/10.1039/c8ra03325k
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