Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries

Hydrated vanadium pentoxide (V2O5•0.44H2O, HVO) nanobelts were synthesized by a simply high-yield (e.g. up to ~99%) hydrothermal approach. The length of these nanobelts was up to several hundred micrometers while the diameter was only ~20 nm and the thickness was ~10 nm...

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Main Authors: Rui, Xianhong, Zhu, Jixin, Liu, Weiling, Tan, Huiteng, Sim, Daohao, Xu, Chen, Zhang, Hua, Ma, Jan, Hng, Huey Hoon, Yan, Qingyu, Lim, Tuti Mariana
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2012
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Online Access:https://hdl.handle.net/10356/95034
http://hdl.handle.net/10220/8407
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-950342020-06-01T10:13:34Z Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries Rui, Xianhong Zhu, Jixin Liu, Weiling Tan, Huiteng Sim, Daohao Xu, Chen Zhang, Hua Ma, Jan Hng, Huey Hoon Yan, Qingyu Lim, Tuti Mariana School of Materials Science & Engineering DRNTU::Engineering::Materials Hydrated vanadium pentoxide (V2O5•0.44H2O, HVO) nanobelts were synthesized by a simply high-yield (e.g. up to ~99%) hydrothermal approach. The length of these nanobelts was up to several hundred micrometers while the diameter was only ~20 nm and the thickness was ~10 nm. Binderfree bulky papers were prepared by using these HVO nanobelts and were tested as Li ion battery cathodes. The unique architecture of the HVO bulky paper provides hierarchical porous channels and large specific surface area, which facilitate fast ion diffusion and effectively strain relaxation upon charge-discharge cycling. The electrochemical tests revealed that the flexible HVO cathode could deliver high reversible specific capacities with ~100% Coulombic efficiency, especially at high C rates. For example, it achieved a reversible capacity of 163 mAh g^-1 at 6.8 C. Accepted version 2012-08-21T06:08:58Z 2019-12-06T19:06:57Z 2012-08-21T06:08:58Z 2019-12-06T19:06:57Z 2011 2011 Journal Article Rui, X., Zhu, J., Liu, W., Tan, H., Sim, D., Xu, C., et al. (2011). Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries. RSC Advances, 1, 117-122. https://hdl.handle.net/10356/95034 http://hdl.handle.net/10220/8407 10.1039/c1ra00281c en RSC advances © 2011 The Royal Society of Chemistry. This is the author created version of a work that has been peer reviewed and accepted for publication by RSC Advances, The Royal Society of Chemistry. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: http://dx.doi.org/10.1039/c1ra00281c. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Materials
spellingShingle DRNTU::Engineering::Materials
Rui, Xianhong
Zhu, Jixin
Liu, Weiling
Tan, Huiteng
Sim, Daohao
Xu, Chen
Zhang, Hua
Ma, Jan
Hng, Huey Hoon
Yan, Qingyu
Lim, Tuti Mariana
Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
description Hydrated vanadium pentoxide (V2O5•0.44H2O, HVO) nanobelts were synthesized by a simply high-yield (e.g. up to ~99%) hydrothermal approach. The length of these nanobelts was up to several hundred micrometers while the diameter was only ~20 nm and the thickness was ~10 nm. Binderfree bulky papers were prepared by using these HVO nanobelts and were tested as Li ion battery cathodes. The unique architecture of the HVO bulky paper provides hierarchical porous channels and large specific surface area, which facilitate fast ion diffusion and effectively strain relaxation upon charge-discharge cycling. The electrochemical tests revealed that the flexible HVO cathode could deliver high reversible specific capacities with ~100% Coulombic efficiency, especially at high C rates. For example, it achieved a reversible capacity of 163 mAh g^-1 at 6.8 C.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Rui, Xianhong
Zhu, Jixin
Liu, Weiling
Tan, Huiteng
Sim, Daohao
Xu, Chen
Zhang, Hua
Ma, Jan
Hng, Huey Hoon
Yan, Qingyu
Lim, Tuti Mariana
format Article
author Rui, Xianhong
Zhu, Jixin
Liu, Weiling
Tan, Huiteng
Sim, Daohao
Xu, Chen
Zhang, Hua
Ma, Jan
Hng, Huey Hoon
Yan, Qingyu
Lim, Tuti Mariana
author_sort Rui, Xianhong
title Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
title_short Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
title_full Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
title_fullStr Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
title_full_unstemmed Facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
title_sort facile preparation of hydrated vanadium pentoxide nanobelts based bulky paper as flexible binder-free cathodes for high-performance lithium ion batteries
publishDate 2012
url https://hdl.handle.net/10356/95034
http://hdl.handle.net/10220/8407
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