2019
DOI: 10.1016/j.jallcom.2018.09.281
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Yttrium modified Ni-rich LiNi0.8Co0.1Mn0.1O2 with enhanced electrochemical performance as high energy density cathode material at 4.5 V high voltage

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Cited by 125 publications
(68 citation statements)
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“…(1) Reduced phase transitions and improved mechanical property: Na, 21 K, 22 Rb, 23 Mg, 24 Y, 25 Al, 26 Zr, 27 Ga, 28…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…(1) Reduced phase transitions and improved mechanical property: Na, 21 K, 22 Rb, 23 Mg, 24 Y, 25 Al, 26 Zr, 27 Ga, 28…”
Section: Introductionmentioning
confidence: 99%
“…(3) Decreased oxygen loss or increased thermal stability: W, 32 Y, 25 Sb, 33 Ti, 34 Zr, 35 (4) Reduced acid-mediated parasitic reactions: Mo, 36 W, 32 F 37 . Generally, the impact of dopants is challenging to deconvolute, as any addition to the active electrode material affect its operational performance in a multitude of ways at different length scales depending on how the dopant incorporates.…”
Section: Introductionmentioning
confidence: 99%
“…In addition, the IR drop of the NCMF cathode was 0.013 V, lower than that of the NCM cathode (0.028 V), indicating both reduced resistance to Li + ion diffusion and less variation of the discharge voltage. The enhanced Li + ion behavior into NCMF as an active material during cycling may be attributed to the F-doping of the cathode, which can increase the d-spacing of the NCM structure [41]. Figure 6a compares the cycling performance of the NCM and NCMF cathodes measured from 20 to 600 mA g −1 .…”
Section: Resultsmentioning
confidence: 99%
“…Doping is generally recognized as an effective strategy to adjust the properties of materials 178. And many elements have been reported doped into the Ni‐rich NCM cathode materials to improve their cycle performance, such as B,42 F,165,179,180 Na91,97 Mg,114,161,181 Al,43,181,182 Si,181,183 S,184 Ca,185 Ti,164,181 V,181 Cr,161 Mn,186 Mo,90,98 Sn,187 Nb,148,170 Ga,181 Y,110 Zr,40,163,181 Ce,93 Al–Mg,162,188 Al–Fe,156 and Mg–Al–B 147. There are several mechanisms for improving the cycle performance: 1) Inactive elements can substitute the unstable elements (Ni and Li) in the Ni‐rich NCM system to hold the original structure;185,189 2) fixing the primary particles of cathode materials to relieve the evolution of cracks 42…”
Section: Service Life Of Ni‐rich Ncm For Libsmentioning
confidence: 99%