Results 21 to 30 of about 2,694,669 (251)
Degradation and Aging Routes of Ni-rich Cathode Based Li-Ion Batteries
Driven by the increasing plea for greener transportation and efficient integration of renewable energy sources, Ni-rich metal layered oxides, namely NMC, Li [Ni1−x−yCoyMnz] O2 (x + y ≤ 0.4), and NCA, Li [Ni1−x−yCoxAly] O2 ...
Philipp Teichert +3 more
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© 2022 Elsevier B.V.The surface instability of Ni3+ in Ni-rich layered oxide cathode materials is recognized as an obstacle in high-energy–density lithium-ion batteries.
Bae, Jong-Seong +7 more
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Lithium-rich layered oxides (LRLO) are a wide class of innovative active materials used in positive electrodes in lithium-ion (LIB) and lithium–metal secondary batteries (LMB).
Laura Silvestri +3 more
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Green Synthesis of Nickel-rich Ni0.89Co0.08Al0.03O2 for Cathode material by Electrochemical Method [PDF]
Nickel-rich layered oxides such as LiNixCoyAl1−x−yO2 (NCA) are attractive cathode materials for lithium-ion batteries because they can deliver high energy density at reduced cobalt content.
Nur Adrian +2 more
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Correlating the phase evolution and anionic redox in Co-Free Ni-Rich layered oxide cathodes [PDF]
Current trend of high-capacity Ni-rich layered cathode is to develop high-Ni and low-Co or Co-free oxides. The high Ni content layered oxides provide great advantages in capacity, cost and environmental benignity, similar to LiNiO2 parent compound.
McCloskey, Bryan D +5 more
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Lithium-rich layered oxides are recognized as promising materials for Li-ion batteries, owing to higher capacity than the currently available commercialized cathode, for their lower cost.
Ashraf Abdel-Ghany +3 more
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Li‐rich and Ni‐rich layered oxides as next‐generation high‐energy cathodes for lithium‐ion batteries (LIBs) possess the catalytic surface, which leads to intensive interfacial reactions, transition metal ion dissolution, gas generation, and ultimately ...
Fangyuan Cheng +11 more
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Oxygen Anion Redox Chemistry Correlated with Spin State in Ni‐Rich Layered Cathodes
Despite the low cost and high capacity of Ni‐rich layered oxides (NRLOs), their widespread implementation in electric vehicles is hindered by capacity decay and O release.
Zhihua Lu +9 more
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Nickel (Ni)-rich layered oxides have drawn great attention as cathode for lithium batteries due to their high capacity, high working voltage and competitive cost.
Shangjuan Yang +6 more
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The cathode, a crucial constituent part of Li-ion batteries, determines the output voltage and integral energy density of batteries to a great extent. Among them, Ni-rich LiNixCoyMnzO2 (x + y + z = 1, x ≥ 0.6) layered transition metal oxides possess a ...
Fangkun Li +8 more
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