LiNi0.8Fe0.1Al0.1O2 as a Cobalt-Free Cathode Material with High Capacity and High Capability for Lithium-Ion Batteries

被引:1
|
作者
Elmaataouy, Elhoucine [1 ]
Chari, Abdelwahed [1 ]
El Bendali, Ayoub [1 ]
Tayoury, Marwa [1 ]
Amine, Rachid [2 ]
Aqil, Mohamed [1 ]
Xu, GuiLiang [3 ]
Liu, Tongchao [3 ]
Alami, Jones [1 ]
Dahbi, Mouad [1 ]
机构
[1] Mohammed VI Polytech Univ UM6P, Dept Mat Sci Energy & Nanoengn, Lot 660, Hay Moulay Rachid 43150, Ben Guerir, Morocco
[2] Argonne Natl Lab, Dept Mat Sci Div, 9700 S Cass Ave, Lemont, IL 60439 USA
[3] Argonne Natl Lab, Dept Chem Sci, Engn Div, 9700 S Cass Ave, Lemont, IL 60439 USA
来源
BATTERIES-BASEL | 2023年 / 9卷 / 01期
关键词
lithium-ion battery; cobalt-free cathode material (NFA); nickel-rich layered oxide; solid-state reaction method; rate performance; LI-ION; LINIO2; CATHODE; CHEMISTRY; DIFFUSION;
D O I
10.3390/batteries9010023
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Obtaining cathode materials with high capacity and cycle stability is one of the main challenges regarding the success of electric vehicle technologies. However, most of the widely used materials with these properties involve the use of toxic and expensive cobalt as the active material. To overcome this challenge, this work proposes a novel cobalt-free cathode material, synthesized for the first time using a solid-state reaction, whose general formula is LiNi0.8Fe0.1Al0.1O2 (NFA). This class of materials offers high capacity and reduces the battery costs by removing cobalt, without jeopardizing the structural stability and safety of the NFAs. The morphology and the structural properties of the obtained NFA cathode material were characterized using different techniques, e.g., scanning electronic microscopy, X-ray diffraction, X-ray fluorescence, and infrared and Raman spectroscopies. The electrochemical activity and diffusivity of the Li-ion during lithium removal and its insertion into the bulk of the NFA cathode demonstrated high-yield specific capacities of approximate to 180 mAh g(-1) at 0.1C, along with a reasonable rate capability and cycling stability, with a capacity retention of approximate to 99.6% after 100 charge/discharge cycles at a rate of C/2, and whose operando X-ray diffraction experiments have been used to study the crystallographic transitions during the lithiation-delithiation reaction.
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页数:14
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