Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity

N anoparticles of n-type conjugated ladder polymer poly(benzobisimidazobenzo­phenanthroline) (BBL) and its analogue (SBBL) are prepared through a reprecipitation method. The ladder polymers are tested as anode materials for lithium-ion batteries for the first time. They exhibit high capacity, good r...

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Main Authors: Wu, Jiansheng, Rui, Xianhong, Wang, Chengyuan, Pei, Wen-Bo, Lau, Raymond, Yan, Qingyu, Zhang, Qichun
Other Authors: School of Chemical and Biomedical Engineering
Format: Journal Article
Language:English
Published: 2015
Subjects:
Online Access:https://hdl.handle.net/10356/106892
http://hdl.handle.net/10220/25145
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author Wu, Jiansheng
Rui, Xianhong
Wang, Chengyuan
Pei, Wen-Bo
Lau, Raymond
Yan, Qingyu
Zhang, Qichun
author2 School of Chemical and Biomedical Engineering
author_facet School of Chemical and Biomedical Engineering
Wu, Jiansheng
Rui, Xianhong
Wang, Chengyuan
Pei, Wen-Bo
Lau, Raymond
Yan, Qingyu
Zhang, Qichun
author_sort Wu, Jiansheng
collection NTU
description N anoparticles of n-type conjugated ladder polymer poly(benzobisimidazobenzo­phenanthroline) (BBL) and its analogue (SBBL) are prepared through a reprecipitation method. The ladder polymers are tested as anode materials for lithium-ion batteries for the first time. They exhibit high capacity, good rate performance, and excellent cycle life, especially at high temperature of 50 °C.
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spelling ntu-10356/1068922021-01-13T02:11:55Z Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity Wu, Jiansheng Rui, Xianhong Wang, Chengyuan Pei, Wen-Bo Lau, Raymond Yan, Qingyu Zhang, Qichun School of Chemical and Biomedical Engineering School of Materials Science & Engineering School of Physical and Mathematical Sciences Energy Research Institute @ NTU (ERI@N) DRNTU::Engineering::Materials::Energy materials DRNTU::Engineering::Materials::Nanostructured materials N anoparticles of n-type conjugated ladder polymer poly(benzobisimidazobenzo­phenanthroline) (BBL) and its analogue (SBBL) are prepared through a reprecipitation method. The ladder polymers are tested as anode materials for lithium-ion batteries for the first time. They exhibit high capacity, good rate performance, and excellent cycle life, especially at high temperature of 50 °C. 2015-03-02T08:17:36Z 2019-12-06T22:20:27Z 2015-03-02T08:17:36Z 2019-12-06T22:20:27Z 2015 2015 Journal Article Wu, J., Rui, X., Wang, C., Pei, W.-B., Lau, R., Yan, Q., et al. (2015). Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity. Advanced energy materials, 5(9), 1402189-. 1614-6832 https://hdl.handle.net/10356/106892 http://hdl.handle.net/10220/25145 10.1002/aenm.201402189 en Advanced energy materials © 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
spellingShingle DRNTU::Engineering::Materials::Energy materials
DRNTU::Engineering::Materials::Nanostructured materials
Wu, Jiansheng
Rui, Xianhong
Wang, Chengyuan
Pei, Wen-Bo
Lau, Raymond
Yan, Qingyu
Zhang, Qichun
Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title_full Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title_fullStr Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title_full_unstemmed Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title_short Nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high-capacity
title_sort nanostructured conjugated ladder polymers for stable and fast lithium storage anodes with high capacity
topic DRNTU::Engineering::Materials::Energy materials
DRNTU::Engineering::Materials::Nanostructured materials
url https://hdl.handle.net/10356/106892
http://hdl.handle.net/10220/25145
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