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Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries

Li-rich layered oxide cathode materials have become one of the most promising cathode materials for high specific energy lithium-ion batteries owning to its high theoretical specific capacity, low cost, high operating voltage and environmental friendliness. Yet they suffer from severe capacity and v...

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Autores principales: Liu, Jun, Liu, Qiming, Zhu, Huali, Lin, Feng, Ji, Yan, Li, Bingjing, Duan, Junfei, Li, Lingjun, Chen, Zhaoyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6981382/
https://www.ncbi.nlm.nih.gov/pubmed/31861775
http://dx.doi.org/10.3390/ma13010040
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author Liu, Jun
Liu, Qiming
Zhu, Huali
Lin, Feng
Ji, Yan
Li, Bingjing
Duan, Junfei
Li, Lingjun
Chen, Zhaoyong
author_facet Liu, Jun
Liu, Qiming
Zhu, Huali
Lin, Feng
Ji, Yan
Li, Bingjing
Duan, Junfei
Li, Lingjun
Chen, Zhaoyong
author_sort Liu, Jun
collection PubMed
description Li-rich layered oxide cathode materials have become one of the most promising cathode materials for high specific energy lithium-ion batteries owning to its high theoretical specific capacity, low cost, high operating voltage and environmental friendliness. Yet they suffer from severe capacity and voltage attenuation during prolong cycling, which blocks their commercial application. To clarify these causes, we synthesize Li(1.5)Mn(0.55)Ni(0.4)Co(0.05)O(2.5) (Li(1.2)Mn(0.44)Ni(0.32)Co(0.04)O(2)) with high-nickel-content cathode material by a solid-sate complexation method, and it manifests a lot slower capacity and voltage attenuation during prolong cycling compared to Li(1.5)Mn(0.66)Ni(0.17)Co(0.17)O(2.5) (Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2)) and Li(1.5)Mn(0.65)Ni(0.25)Co(0.1)O(2.5) (Li(1.2)Mn(0.52)Ni(0.2)Co(0.08)O(2)) cathode materials. The capacity retention at 1 C after 100 cycles reaches to 87.5% and the voltage attenuation after 100 cycles is only 0.460 V. Combining X-ray diffraction (XRD), scanning electron microscope (SEM), and transmission electron microscopy (TEM), it indicates that increasing the nickel content not only stabilizes the structure but also alleviates the attenuation of capacity and voltage. Therefore, it provides a new idea for designing of Li-rich layered oxide cathode materials that suppress voltage and capacity attenuation.
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spelling pubmed-69813822020-02-07 Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries Liu, Jun Liu, Qiming Zhu, Huali Lin, Feng Ji, Yan Li, Bingjing Duan, Junfei Li, Lingjun Chen, Zhaoyong Materials (Basel) Article Li-rich layered oxide cathode materials have become one of the most promising cathode materials for high specific energy lithium-ion batteries owning to its high theoretical specific capacity, low cost, high operating voltage and environmental friendliness. Yet they suffer from severe capacity and voltage attenuation during prolong cycling, which blocks their commercial application. To clarify these causes, we synthesize Li(1.5)Mn(0.55)Ni(0.4)Co(0.05)O(2.5) (Li(1.2)Mn(0.44)Ni(0.32)Co(0.04)O(2)) with high-nickel-content cathode material by a solid-sate complexation method, and it manifests a lot slower capacity and voltage attenuation during prolong cycling compared to Li(1.5)Mn(0.66)Ni(0.17)Co(0.17)O(2.5) (Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2)) and Li(1.5)Mn(0.65)Ni(0.25)Co(0.1)O(2.5) (Li(1.2)Mn(0.52)Ni(0.2)Co(0.08)O(2)) cathode materials. The capacity retention at 1 C after 100 cycles reaches to 87.5% and the voltage attenuation after 100 cycles is only 0.460 V. Combining X-ray diffraction (XRD), scanning electron microscope (SEM), and transmission electron microscopy (TEM), it indicates that increasing the nickel content not only stabilizes the structure but also alleviates the attenuation of capacity and voltage. Therefore, it provides a new idea for designing of Li-rich layered oxide cathode materials that suppress voltage and capacity attenuation. MDPI 2019-12-20 /pmc/articles/PMC6981382/ /pubmed/31861775 http://dx.doi.org/10.3390/ma13010040 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Jun
Liu, Qiming
Zhu, Huali
Lin, Feng
Ji, Yan
Li, Bingjing
Duan, Junfei
Li, Lingjun
Chen, Zhaoyong
Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title_full Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title_fullStr Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title_full_unstemmed Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title_short Effect of Different Composition on Voltage Attenuation of Li-Rich Cathode Material for Lithium-Ion Batteries
title_sort effect of different composition on voltage attenuation of li-rich cathode material for lithium-ion batteries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6981382/
https://www.ncbi.nlm.nih.gov/pubmed/31861775
http://dx.doi.org/10.3390/ma13010040
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