Cargando…
A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery
Operation of the nonaqueous Li–O(2) battery critically relies on the reversible oxygen reduction/evolution reactions in the porous cathode. Carbon and polymeric binder, widely used for the construction of Li–O(2) cathode, have recently been shown to decompose in the O(2) environment and thus cannot...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2015
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5115428/ https://www.ncbi.nlm.nih.gov/pubmed/27980967 http://dx.doi.org/10.1002/advs.201500092 |
_version_ | 1782468520818245632 |
---|---|
author | Chang, Yueqi Dong, Shanmu Ju, Yuhang Xiao, Dongdong Zhou, Xinhong Zhang, Lixue Chen, Xiao Shang, Chaoqun Gu, Lin Peng, Zhangquan Cui, Guanglei |
author_facet | Chang, Yueqi Dong, Shanmu Ju, Yuhang Xiao, Dongdong Zhou, Xinhong Zhang, Lixue Chen, Xiao Shang, Chaoqun Gu, Lin Peng, Zhangquan Cui, Guanglei |
author_sort | Chang, Yueqi |
collection | PubMed |
description | Operation of the nonaqueous Li–O(2) battery critically relies on the reversible oxygen reduction/evolution reactions in the porous cathode. Carbon and polymeric binder, widely used for the construction of Li–O(2) cathode, have recently been shown to decompose in the O(2) environment and thus cannot sustain the desired battery reactions. Identifying stable cathode materials is thus a major current challenge that has motivated extensive search for noncarbonaceous alternatives. Here, RuO(x)/titanium nitride nanotube arrays (RuO(x)/TiN NTA) containing neither carbon nor binder are used as the cathode for nonaqueous Li–O(2) batteries. The free standing TiN NTA electrode is more stable than carbon electrode, and possesses enhanced electronic conductivity compared to TiN nanoparticle bound with polytetrafluoroethylene due to a direct contact between TiN and Ti mesh substrate. RuO(x) is electrodeposited into TiN NTA to form a coaxial nanostructure, which can further promote the oxygen evolution reaction. This optimized monolithic electrode can avoid the side reaction arising from carbon material, which exhibits low overpotential and excellent cycle stability over 300 cycles. These results presented here demonstrate a highly effective carbon‐free cathode and further imply that the structure designing of cathode plays a critical role for improving the electrochemical performance of nonaqueous Li–O(2) batteries. |
format | Online Article Text |
id | pubmed-5115428 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-51154282016-12-15 A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery Chang, Yueqi Dong, Shanmu Ju, Yuhang Xiao, Dongdong Zhou, Xinhong Zhang, Lixue Chen, Xiao Shang, Chaoqun Gu, Lin Peng, Zhangquan Cui, Guanglei Adv Sci (Weinh) Full Papers Operation of the nonaqueous Li–O(2) battery critically relies on the reversible oxygen reduction/evolution reactions in the porous cathode. Carbon and polymeric binder, widely used for the construction of Li–O(2) cathode, have recently been shown to decompose in the O(2) environment and thus cannot sustain the desired battery reactions. Identifying stable cathode materials is thus a major current challenge that has motivated extensive search for noncarbonaceous alternatives. Here, RuO(x)/titanium nitride nanotube arrays (RuO(x)/TiN NTA) containing neither carbon nor binder are used as the cathode for nonaqueous Li–O(2) batteries. The free standing TiN NTA electrode is more stable than carbon electrode, and possesses enhanced electronic conductivity compared to TiN nanoparticle bound with polytetrafluoroethylene due to a direct contact between TiN and Ti mesh substrate. RuO(x) is electrodeposited into TiN NTA to form a coaxial nanostructure, which can further promote the oxygen evolution reaction. This optimized monolithic electrode can avoid the side reaction arising from carbon material, which exhibits low overpotential and excellent cycle stability over 300 cycles. These results presented here demonstrate a highly effective carbon‐free cathode and further imply that the structure designing of cathode plays a critical role for improving the electrochemical performance of nonaqueous Li–O(2) batteries. John Wiley and Sons Inc. 2015-06-18 /pmc/articles/PMC5115428/ /pubmed/27980967 http://dx.doi.org/10.1002/advs.201500092 Text en © 2015 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Full Papers Chang, Yueqi Dong, Shanmu Ju, Yuhang Xiao, Dongdong Zhou, Xinhong Zhang, Lixue Chen, Xiao Shang, Chaoqun Gu, Lin Peng, Zhangquan Cui, Guanglei A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title | A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title_full | A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title_fullStr | A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title_full_unstemmed | A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title_short | A Carbon‐ and Binder‐Free Nanostructured Cathode for High‐Performance Nonaqueous Li‐O(2) Battery |
title_sort | carbon‐ and binder‐free nanostructured cathode for high‐performance nonaqueous li‐o(2) battery |
topic | Full Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5115428/ https://www.ncbi.nlm.nih.gov/pubmed/27980967 http://dx.doi.org/10.1002/advs.201500092 |
work_keys_str_mv | AT changyueqi acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT dongshanmu acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT juyuhang acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT xiaodongdong acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT zhouxinhong acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT zhanglixue acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT chenxiao acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT shangchaoqun acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT gulin acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT pengzhangquan acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT cuiguanglei acarbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT changyueqi carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT dongshanmu carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT juyuhang carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT xiaodongdong carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT zhouxinhong carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT zhanglixue carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT chenxiao carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT shangchaoqun carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT gulin carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT pengzhangquan carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery AT cuiguanglei carbonandbinderfreenanostructuredcathodeforhighperformancenonaqueouslio2battery |