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- W4309835946 abstract "Lithium-ion batteries (LIBs) require Ni-rich cathode material with a high capacity to meet the growing demand for powering electric vehicles and other energy-dense devices. However, significant challenges remain to improve capacity retention during cycling and thermal-abuse tolerance of this material. Alternative to the traditional polycrystalline Ni-rich cathode material, we report here a monocrystalline Ni-rich cathode material prepared via a hydrothermal process. Ni-rich composition (LiNi 0.96 Mn 0.02 Co 0.02 O 2 ) was selected for comparative evaluation of polycrystalline cathode material via a co-precipitation process and monocrystalline cathode material via a hydrothermal process. A detailed description of the advanced CSTR co-precipitation process and the developed hydrothermal process applied to this material synthesis is presented. The excellent physical and electrochemical properties of the monocrystalline cathode material prepared by the developed hydrothermal process will be reported through analysis of coin half-cell, SEM, EDS, ICP-MS, nanoindentation, and other advanced characterization techniques. This work underlines the developed hydrothermal process in producing monocrystalline cathode material which is a rapid, robust, and scalable process with economic feasibility." @default.
- W4309835946 created "2022-11-29" @default.
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- W4309835946 date "2022-10-09" @default.
- W4309835946 modified "2023-09-30" @default.
- W4309835946 title "Comparative Evaluation of Polycrystalline and Monocrystalline LiNi<sub>0.96</sub>Mn<sub>0.02</sub>Co<sub>0.02</sub>O<sub>2 </sub>Cathodes" @default.
- W4309835946 doi "https://doi.org/10.1149/ma2022-0272591mtgabs" @default.
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