Articles with "co0 mn0" as a keyword



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The Role of Zr Doping in Stabilizing Li[Ni0.6 Co0.2 Mn0.2 ]O2 as a Cathode Material for Lithium-Ion Batteries.

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Published in 2019 at "ChemSusChem"

DOI: 10.1002/cssc.201900500

Abstract: Ni-rich layered LiNi1-x-y Cox Mny O2 systems are the most promising cathode materials for high energy density Li-ion batteries (LIBs). However, Ni-rich cathode materials inevitably suffer from rapid capacity fading and poor rate capability owing… read more here.

Keywords: co0 mn0; cathode; cathode material; ion batteries ... See more keywords
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Interfacial Reviving of the Degraded LiNi0.8 Co0.1 Mn0.1 O2 Cathode by LiPO3 Repair Strategy.

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Published in 2022 at "Small"

DOI: 10.1002/smll.202107346

Abstract: Nickel-rich cathode materials, owing to their high energy density and low cost, are considered to be one of the cathodes with the most potential in next-generation lithium-ion batteries. Unfortunately, this kind of cathode with highly… read more here.

Keywords: lini0 co0; co0 mn0; cathode; repair ... See more keywords
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Nonsacrificial Nitrile Additive for Armoring High-Voltage LiNi0.83 Co0.07 Mn0.1 O2 Cathode with Reliable Electrode-Electrolyte Interface toward Durable Battery.

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Published in 2022 at "Small"

DOI: 10.1002/smll.202202989

Abstract: High-capacity Ni-rich layered oxides are considered as promising cathodes for lithium-ion batteries. However, the practical applications of LiNi0.83 Co0.07 Mn0.1 O2  (NCM83) cathode are challenged by continuous transition metal (TM) dissolution, microcracks and mixed arrangement… read more here.

Keywords: co0 mn0; nitrile additive; nonsacrificial nitrile; lini0 co0 ... See more keywords