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Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance

Yandong Duan, Bingkai Zhang, Jiaxin Zheng, Jiangtao Hu, Jianguo Wen, Dean J. Miller, Pengfei Yan, Tongchao Liu, Hua Guo, Wen Li, Xiaohe Song, Zengqing Zhuo, Chaokun Liu, Hanting Tang, Rui Tan Orcid Logo, Zonghai Chen Orcid Logo, Yang Ren, Yuan Lin, Wanli Yang, Chong-Min Wang Orcid Logo, Lin-Wang Wang, Jun Lu Orcid Logo, Khalil Amine Orcid Logo, Feng Pan Orcid Logo

Nano Letters, Volume: 17, Issue: 10, Pages: 6018 - 6026

Swansea University Author: Rui Tan Orcid Logo

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Published in: Nano Letters
ISSN: 1530-6984 1530-6992
Published: American Chemical Society (ACS) 2017
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URI: https://cronfa.swan.ac.uk/Record/cronfa67833
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ZDSY20130331145131323,CXZZ20120829172325895, JCYJ20120614150338154). Addi-tionally, we acknowledge the support of the ShenZhen NationalSuper Computing Center. The high resolution transmissionelectron microscopy was accomplished in the Center forNanoscale Materials at Argonne National Laboratory, a DOE-BES Facility, supported under contract no. DEAC02-06CH11357 by UChicago Argonne, LLC. The AdvancedLight Source is supported by the Director, Office of Science,Office of Basic Energy Sciences, of the U.S. Department ofEnergy under contract no. DE-AC02-05CH11231. L.-W. 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spelling v2 67833 2024-09-25 Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance 774c33a0a76a9152ca86a156b5ae26ff 0009-0001-9278-7327 Rui Tan Rui Tan true false 2024-09-25 EAAS Journal Article Nano Letters 17 10 6018 6026 American Chemical Society (ACS) 1530-6984 1530-6992 Cathode materials; reconstructed surface; lithium-ion batteries; excess capacity; size-dependent 11 10 2017 2017-10-11 10.1021/acs.nanolett.7b02315 Letter COLLEGE NANME Engineering and Applied Sciences School COLLEGE CODE EAAS Swansea University The research was financially supported by the National Projectfor EV Batteries (20121110, Optimum Nano, Shenzhen),National Distinguished Young Scientists of China (51425301),STCSM (12JC1401200), Guangdong Innovation Team Project(no. 2013N080), Natural Science Foundation of GuangdongProvince (2015A030310138), and Shenzhen Science andTechnology Research Grant (nos. ZDSY20130331145131323,CXZZ20120829172325895, JCYJ20120614150338154). Addi-tionally, we acknowledge the support of the ShenZhen NationalSuper Computing Center. The high resolution transmissionelectron microscopy was accomplished in the Center forNanoscale Materials at Argonne National Laboratory, a DOE-BES Facility, supported under contract no. DEAC02-06CH11357 by UChicago Argonne, LLC. The AdvancedLight Source is supported by the Director, Office of Science,Office of Basic Energy Sciences, of the U.S. Department ofEnergy under contract no. DE-AC02-05CH11231. L.-W. W.was supported by the Assistant Secretary for Energy Efficiencyand Renewal Energy under the Battery Material Research(BMR) program 2024-10-16T15:45:08.9410714 2024-09-25T21:42:14.1038450 Faculty of Science and Engineering School of Engineering and Applied Sciences - Chemical Engineering Yandong Duan 1 Bingkai Zhang 2 Jiaxin Zheng 3 Jiangtao Hu 4 Jianguo Wen 5 Dean J. Miller 6 Pengfei Yan 7 Tongchao Liu 8 Hua Guo 9 Wen Li 10 Xiaohe Song 11 Zengqing Zhuo 12 Chaokun Liu 13 Hanting Tang 14 Rui Tan 0009-0001-9278-7327 15 Zonghai Chen 0000-0001-5371-9463 16 Yang Ren 17 Yuan Lin 18 Wanli Yang 19 Chong-Min Wang 0000-0003-3327-0958 20 Lin-Wang Wang 21 Jun Lu 0000-0003-0858-8577 22 Khalil Amine 0000-0001-9206-3719 23 Feng Pan 0000-0002-8216-1339 24
title Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
spellingShingle Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
Rui Tan
title_short Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
title_full Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
title_fullStr Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
title_full_unstemmed Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
title_sort Excess Li-Ion Storage on Reconstructed Surfaces of Nanocrystals To Boost Battery Performance
author_id_str_mv 774c33a0a76a9152ca86a156b5ae26ff
author_id_fullname_str_mv 774c33a0a76a9152ca86a156b5ae26ff_***_Rui Tan
author Rui Tan
author2 Yandong Duan
Bingkai Zhang
Jiaxin Zheng
Jiangtao Hu
Jianguo Wen
Dean J. Miller
Pengfei Yan
Tongchao Liu
Hua Guo
Wen Li
Xiaohe Song
Zengqing Zhuo
Chaokun Liu
Hanting Tang
Rui Tan
Zonghai Chen
Yang Ren
Yuan Lin
Wanli Yang
Chong-Min Wang
Lin-Wang Wang
Jun Lu
Khalil Amine
Feng Pan
format Journal article
container_title Nano Letters
container_volume 17
container_issue 10
container_start_page 6018
publishDate 2017
institution Swansea University
issn 1530-6984
1530-6992
doi_str_mv 10.1021/acs.nanolett.7b02315
publisher American Chemical Society (ACS)
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Engineering and Applied Sciences - Chemical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Chemical Engineering
document_store_str 0
active_str 0
published_date 2017-10-11T15:45:07Z
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