An ion redistributor for dendrite-free lithium metal anodes

Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
American Association for the Advancement of Science (AAAS)
Published 2018
Publication Date:
2018-11-10
Publisher:
American Association for the Advancement of Science (AAAS)
Electronic ISSN:
2375-2548
Topics:
Natural Sciences in General
Published by:
_version_ 1836399084696502273
autor Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
beschreibung Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped Li 6.75 La 3 Zr 1.75 Ta 0.25 O 12 (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g –1 for LiFePO 4 | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.
citation_standardnr 6356039
datenlieferant ipn_articles
feed_id 228416
feed_publisher American Association for the Advancement of Science (AAAS)
feed_publisher_url http://www.aaas.org/
insertion_date 2018-11-10
journaleissn 2375-2548
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher American Association for the Advancement of Science (AAAS)
quelle Science Advances
relation http://advances.sciencemag.org/cgi/content/short/4/11/eaat3446?rss=1
search_space articles
shingle_author_1 Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
shingle_author_2 Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
shingle_author_3 Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
shingle_author_4 Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
shingle_catch_all_1 An ion redistributor for dendrite-free lithium metal anodes
Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped Li 6.75 La 3 Zr 1.75 Ta 0.25 O 12 (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g –1 for LiFePO 4 | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.
Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
American Association for the Advancement of Science (AAAS)
2375-2548
23752548
shingle_catch_all_2 An ion redistributor for dendrite-free lithium metal anodes
Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped Li 6.75 La 3 Zr 1.75 Ta 0.25 O 12 (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g –1 for LiFePO 4 | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.
Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
American Association for the Advancement of Science (AAAS)
2375-2548
23752548
shingle_catch_all_3 An ion redistributor for dendrite-free lithium metal anodes
Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped Li 6.75 La 3 Zr 1.75 Ta 0.25 O 12 (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g –1 for LiFePO 4 | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.
Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
American Association for the Advancement of Science (AAAS)
2375-2548
23752548
shingle_catch_all_4 An ion redistributor for dendrite-free lithium metal anodes
Lithium (Li) metal anodes have attracted considerable interest due to their ultrahigh theoretical gravimetric capacity and very low redox potential. However, the issues of nonuniform lithium deposits (dendritic Li) during cycling are hindering the practical applications of Li metal batteries. Herein, we propose a concept of ion redistributors to eliminate dendrites by redistributing Li ions with Al-doped Li 6.75 La 3 Zr 1.75 Ta 0.25 O 12 (LLZTO) coated polypropylene (PP) separators. The LLZTO with three-dimensional ion channels can act as a redistributor to regulate the movement of Li ions, delivering a uniform Li ion distribution for dendrite-free Li deposition. The standard deviation of ion concentration beneath the LLZTO composite separator is 13 times less than that beneath the routine PP separator. A Coulombic efficiency larger than 98% over 450 cycles is achieved in a Li | Cu cell with the LLZTO-coated separator. This approach enables a high specific capacity of 140 mAh g –1 for LiFePO 4 | Li pouch cells and prolonged cycle life span of 800 hours for Li | Li pouch cells, respectively. This strategy is facile and efficient in regulating Li-ion deposition by separator modifications and is a universal method to protect alkali metal anodes in rechargeable batteries.
Zhao, C.-Z., Chen, P.-Y., Zhang, R., Chen, X., Li, B.-Q., Zhang, X.-Q., Cheng, X.-B., Zhang, Q.
American Association for the Advancement of Science (AAAS)
2375-2548
23752548
shingle_title_1 An ion redistributor for dendrite-free lithium metal anodes
shingle_title_2 An ion redistributor for dendrite-free lithium metal anodes
shingle_title_3 An ion redistributor for dendrite-free lithium metal anodes
shingle_title_4 An ion redistributor for dendrite-free lithium metal anodes
timestamp 2025-06-30T23:37:21.495Z
titel An ion redistributor for dendrite-free lithium metal anodes
titel_suche An ion redistributor for dendrite-free lithium metal anodes
topic TA-TD
uid ipn_articles_6356039